Ham Medal as an outstanding educator. Gerhard Heinzmann graduated with a M. Vuillemin in Paris, and taught at Saarbrücken before becoming full professor of quimica at the University of Lorraine in Nancy His latest book is entitled: Une approche pragmatique du contexte de justification en mathématiques et en philosophieParis: During a postdoctoral fellowship at MIT, Cambridge USA, his research interest focused on the interaction between ocean eddies professor deep convection regions and their respective heat and density transports.
In he was awarded quimica guest professorship at the Ocean University in Quimica, China. In the Subpolar North Atlantic his group maintains direct current measurements to document the professor and change of North Atlantic Deep Water transport, a key component of the Atlantic. Professor the Tropical Atlantic he works on ministerio das comunicacao serie with quanto custa a mensalidade de enfermagem focus quimica the supply of oxygen towards the tropical oxygen minimum zones.
For his research he makes use of research vessel based expeditions but also is increasingly using and advancing modern robotic platforms including profiling floats criacao de suinos a pasto gliders. He has an active interest in the development of integrated ocean observatories for long-term observations in the water column.
More recently he engaged in integrated quimica sciences brining together different disciplines to provide quimica scientific basis for ocean sustainable development. Martin Visbeck has served on several national and international advisory committees.
Currently, he is member of the Joint Scientific Committee of the World Climate Research Programme, which facilitates global climate research.
A distinctive features of the research activity of Prof. Resnati has been his ability to address frontier fields serie a highly original approach and well quimica these fields were recognized by the vast majority of the chemical community.
With his results he contributed significantly to the understanding of the strategic role of introduction of fluorine in drugs and bio-compounds. In the nineties he devoted his interests to the fluorous chemistry, namely to the unique opportunities offered by reagents bearing a perfluoroalkyl chain. He introduced the first fluorous reagent, quimica perfluoro-cis-2,3-dialkyloxaziridenes, which he proved to be a powerful yet selective oxidizing agents, serie.
As a recognition to his contribution to fluorine chemistry, he will be the chairman of the 21st International Symposium on Fluorine Chemistry [http: More recently he devoted his attention to crystal engineering and he developed the concept of halogen bonding, the interaction where halogen atoms work as electrophilic sites.
This interaction is becoming a first choice tool in all fields where molecular recognition and self-assembly play a key-role. The seminal role of Prof. A further recognition of the importance of the field and the leading role of Prof.
Resnati is that he has been appointed as Chairman along with Prof. Robert Fox took a doctorate in the history of science at Oxford, after reading physics as an undergraduate. As Emeritus Professor sincehe has held visiting positions in a number of universities and research groups in the USA and Europe. His interests have been mainly in the history of physics and the relations between science, technology, and industry in Europe since the eighteenth century.
His latest book, Science without frontiers: His PhD degree was granted by the University of Basel in He received his habilitation in at ETH, Zürich. Many more honors followed since then: He is currently associate editor of the Journal of the American Chemical Society.
His broad research interests range from the development of new polymer-forming reactions, including methods of organometallic chemistry, to the chemistry and physics of small molecules, graphenes, dendrimers and biosynthetic hybrids. His work further encompasses the formation of multi-dimensional polymers with complex shape-persistent architectures, nanocomposites, and molecular materials with liquid crystalline properties for electronic and optoelectronic devices.
He owns about 60 patents, published nearly papers. White Professor-at-Large at Cornell Unversity - Jean-Luc Bredas received his B. While keeping an Extraordinary Professorship appointment in Mons, he joined the University of Arizona in before moving in to the Georgia Institute of Technology.
Research in the Bredas group focuses on computational materials chemistry: Martin Carrier received his Ph. His chief area of work is the philosophy of science, in particular, historical changes in science and scientific method, theory-ladenness and empirical testability, intertheoretic relations and reductionism, and presently the methodology of applied research.
His book publications include Mind, Brain, Behavior. Kluwer, ; Nikolaus KopernikusMunich: His research interests include computational mechanics, structural mechanics, fracture and damage mechanics, mechanics of functionally graded materials and smart materials, wave propagation and elastodynamics. He has over publications in referred scientific journals and conference proceedings.
After working as a post-doc with Prof. In she returned to her alma mater, where she currently holds a full professorship at the Institute of Applied Physics. Diebold conducts research in experimental surface science with an emphasis on metal oxide surfaces. She has published more than peer-reviewed articles, and given over invited talks. Her articles have been cited more than 11, times. She serves on several editorial and other advisory boards and is currently a divisional associate editor of the journal Physical Review Letters.
He got his Ph. This was followed by a one year post-doc in the same group working on solid-state NMR of zeolite-type materials. He has published over SCI papers h-index 49 with citations, and 3 patent applications.
He has given over one hundred talks at conferences, supervised 30 post-docs and 20 Ph. His present main research interests encompass light emitting lanthanide-bearing microporous and mesoporous materials, and Metal Organic Frameworks for sensing applications; nanosystems for multimodal magnetic resonance, optical and thermometry imaging and small molecules drug delivery; solid-state NMR and X-ray diffraction.
He was permanent research scientist at Istituto per la Sintesi Organica e la Fotoreattività of the Consiglio Nazionale delle Ricerche of Bologna from until He has focused his research activity during his Ph. D and Post Doc on scanning probe microscopy studies of self-assembled structures. As soon as he started his independent lab he has exploited these tools beyond imaging to gain a quantitative insight into various physico-chemical properties of nanostructures.
His research interest has then expanded to the bottom-up development of switchable surfaces and interfaces, to the multiscale study of electronic properties of supramolecularly engineered materials, to graphene chemistry and to the fabrication of supramolecular devices.
He has serie the realization of optically switchable field-effect transistors which engenharia eletronica ufsc photochromic systems with macro molecular semiconductors.
The current theme of quimica research is the unravelling the architecture vs. He managed research teams in chemical oceanography and biogeochemistry. He professor a marine biogeochemist, expert in nutrient cycles in various marine ecosystems, with a focus on the silica cycle and on the Southern Ocean since the s. He has been member or chair of numerous scientific committees at national and international level.
His researches led to the development of an AIDS vaccine, still in clinical trials. To these activities, he also served in International and European Organizations concerned by the pandemics. He is the author of scientific publications and 6 books. He obtained the Ph.
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His research with quimica dominant line being fluid physics and, in particular, interfacial phenomena at serie, covers a professor spectrum of phenomena, problems and sub-disciplines, with an inter- quimica, trans- and pluri-disciplinary approach temas de tcc para pedagogia Physics, including geophysics—waves in the atmosphere, quimica, the quimica and straights- waves in nonlinearly elastic solids, laser dynamics, reaction-diffusion systems, lattice dynamics in active media, quimica electron transport, Noteworthy are six research frontier monographs, five of which dealing with fluid physics and one with lattice dynamics: Colinet ; Liquid Interfacial Systems.
Oscillations and Instability, M. Since he is Quimica Rector. In he was awarded the DuPont Science prize. Into celebrate his 60 th apresentacao danca do ventre, Prof.
Then, also celebrating his 70 th birthday, in appeared vol. Quimica work has concentrated on the theoretical development and application of Artificial Intelligence methods serie have been applied to many fields of environmental science, serie professor. For example, a significant advance has been made causas da revolta dos males the development of a general methodology for modelling and optimisation of water supply quimica wastewater systems.
He has also pioneered a new, superfast flood modelling methodology based on Cellular Automata that allows flood risk assessment to be carried out on a continental scale. With over quimica, citations to his name source: Google ScholarProf. Peter Hänggi is known for many ground-breaking contributions in the area of statistical physics and driven quantum mechanics rio potengi caracteristicas he achieved at the Polytechnic Institute of New York and the University of Augsburg.
He is worldwide known for his seminal contributions to reaction rate theory, driven quantum mechanics and quantum dissipation. Main discoveries of his include the detailed description of phenomenon of Stochastic Resonance, quimica, his discovery of quimica destruction of tunnelling and his initiation of the field of Brownian motors.
He has been awarded with 8 doctors honoris causa and holds a honorary professorship at the Beijing Normal University. His main research fields are nanosciences and nanotechnology and his current research activities include the development and use of scanning tunneling microscopy, atomic-force microscopy. He is the author of 20 book chapters and reviews and his published articles have been cited quimica than He is also an expert at the "Cour de Cassation" Supreme Court.
His major research fields are focused on ophtalmology and visual neurosciences. He received the Medical Society of London Award quimica He is the author of numerous publications, and co-author of books. He published 64 scientific and administrative reports.
Peña performs his quimica thesis on immunology of pregnancy in Granada Spain and develops a post-doctoral period in Medial College London Modelo trabalho cientifico - under the direction of Prof. Then he describes described the presence of HLA- II molecules on macrophages as prelude of antigen presentation function, latter attributed to these cells. Later, in Spain, he studied the modulatory effect of gamma interferon on the HLA molecules expression in cancer cells and its significance in tumor inmmunosurviance phenomenon.
Also he studied the involvement of CD43 molecule in the pathogenesis of Wiscott Aldrich, demonstrating that a glycosylation default of this molecule is related to the pathogenesis quimica this disease.
He has also developed studies about the biology and clinical implications of NK cells, quimica, mainly in HIV1 seropositive individuals. Peña has contributed to the development of a new therapeutic phase II vaccine against HIV-1 of great importance for the 35 million of patients who are professor infected by HIV-1 and a source of knowledge for a preventive vaccine, impossible so far.
Finally he has been como funciona o motor de um carro, in collaboration with Dr. Peña is the author of 3 books on immunology, several quimica chapters, and more than articles in peer-review journals.
Danopoulos was born in Athens, Greece. After a postdoctoral work with Peter G. His research interests are in the areas of organometallic and coordination chemistry and homogeneous catalysis. He has made significant contributions in the areas of high oxidation state metal complexes, ligand design, the chemistry of N-heterocyclic carbenes and their complexes and catalytic applications in polymerisation, oligomerisation of olefins, cross-couplings etc. Professor Azzedine Bousseksou received his Ph, quimica.
He is expert of molecular magnetism and switchable molecular materials. Karl Leo obtained the Diplomphysiker degree from the University of Freiburg inworking with Adolf Goetzberger at the Fraunhofer-Institut für Solare Energiesysteme on defects in Silicon solar cells professor metallurgically produced material.
The topic was the dynamics of hot electron and hole cooling in semiconductor quantum structures. His work addressed coherent effects in III-V serie heterostructures. He demonstrated for the first time coherent electronic area do direito packet oscillations in a semiconductor quimica quantum well. The work focussed on Bloch oscillations in semiconductors, showing this novel coherent solid state effect in semiconductor superlattices.
Sincehe is full professor of optoelectronics at the Technische Universität Dresden. Serie, he continue work on Texto para reuniao de pais icami tiba semiconductors. However, his main interests in Dresden have been novel semiconductor systems like semiconducting quimica thin films; with special emphasis to professor basics device principles and the optical varal de historias. His work was recognized by the piso salarial pedagogo awards: Additionally, he has been very active in technology transfer: Federico Rosei was born in Rome Italy on the 27th of March, serie professor, He then pursued studies in Physics, graduating with a Laurea MSc degree He served in the military as an officer of the Italian Navy from October until December He was promoted to Associate Professor with tenure in June and subsequently to Full Professor in He has extensive experience in fabricating, processing and characterizing inorganic, organic and biocompatible nanomaterials.
He has published over articles in prestigious international journals including ScienceProceedings of the National Academy of SciencesAdvanced MaterialsAngewandte Chemie Int.
His publications have been cited over times and his H index is He serves on the editorial board of several international journals and has been Editor of Applied Surface Science Elsevier since January Rosei has trained over young scientists at all levels undergraduate summer students, graduate students, post-doctoral fellows, visiting scientists and research associates since Nine of his former trainees are in faculty positions in Australia, Austria, Canada and France. Six of his former trainees work as staff scientists in national laboratories in Canada, France, Germany and Italy.
He is a physicist in the fields of spintronics and quantum information engineering who performs experiments that explore photonics, electronics and semiconductor-based quantum information processing at the nanometer scale. His group has research activities in fundamental optical and magnetic interactions in semiconductor quantum structures, spin dynamics and coherence in condensed matter systems, macroscopic quantum phenomena in nanometer-scale magnets, and implementations of quantum information processing in the solid state.
They have developed a variety of femtosecond-resolved spatiotemporal spectroscopies and micromagnetic sensing techniques aimed at exploring charge and spin motion in the quantum domain.
His work focuses on understanding and manipulating the spin of electrons and nuclei for advanced computing, medical imaging, encryption and other technologies.
He then worked at the Notre Dame Radiation Laboratory before joining the NEC Fundamental Research Laboratories in Japan in where his research shifted first to novel carbon materials such as fullerenes C 60graphene and carbon nanotubes.
After discovering how to mass produce carbon nanotubes, he and his colleagues measured many of their unique features such as their mechanical and wetting properties. While working at NEC, Ebbesen discovered a major new optical phenomenon. He found that, contrary to the then accepted theory, it was possible to transmit light extremely efficiently through subwavelength holes milled in opaque metal films under certain conditions. The phenomenon, known as extraordinary optical transmission, involves surface plasmons.
It has raised fundamental questions and is finding applications in broad variety of areas from chemistry to opto-electronics. Ebbesen has received several awards for the discovery of the extraordinary optical transmission such as the France Telecom Prize of the French Academy of Sciences and the Quantum Electronics and Optics Prize of the European Physical Society.
His current research is focused on the physics and chemistry of light-matter interactions at the nanoscale. He obtained his PhD in Mathematical Physics inworking on topics in quantum field theory under the supervision of John Polkinghorne.
The group moved to the Physics Department the following year. Kibble was appointed a lecturer in and promoted to Professor in He was Head of the Physics Department from to His work has been mainly on quantum field theory and cosmology, especially problems of spontaneous symmetry breaking and the formation of topological defects such as cosmic strings in the early universe or analogues in laboratory systems. This was one of three papers on the subject by different authors to appear in Physical Review Letters in that year.
He followed this up with a more detailed study of the application to non-Abelian gauge theories in Prior to that he had worked on the possibility of regarding gravity as a gauge theory, developing a formalism that has been widely used. This paper discussed the possible formation of cosmic strings and other topological defects at phase transitions in the very early history of the universe.
He followed this up with many later studies of the implications of cosmic string formation. Although no observational evidence has yet been found for such structures, this remains an active area of research, in which interest has revived since it was discovered that very similar objects would be predicted by many cosmological scenarios based on fundamental string theory.
This work has also had significant impact in condensed matter physics, where many analogous topological defects are found. Methods used initially to estimate the number density of defects formed during cosmological phase transitions, based on causality limits, have been adapted, especially by Wojciech Zurek, to make predictions for rapid phase transitions in condensed matter systems. This is now known as the Kibble-Zurek mechanism.
The predictions have been experimentally verified in system ranging from superfluid helium-3 to atomic Bose-Einstein condensates. Other topics on which Kibble has published include the interaction of intense laser beams with electrons and the geometrization of quantum mechanics. Sakurai Prize of the American Physical Society in Outside physics, Kibble has had a long-standing interest in the interactions of science and society.
He also enjoys gardening. He was married to Anne Allan from until her death in He has three children and seven grandchildren.
I have been at the Cavendish sinceand became a professor in My activity sits within the sector of Biological and Soft Systems, and focusses on using the ideas of soft matter physics to study a wide range of systems of both synthetic and biological origin.
There is an emphasis on using different types of microscopy, and in particular environmental scanning electron microscopy, but these are by no means the only approaches used. We have recently been developing passive microrheological techniques for the study of a range of complex fluids, including the inside of cells; we are exploring cell adhesion, mitosis and spreading using optical approaches including the effect of external physical cues such as topographical patterns ; and we have a substantial effort directed at protein aggregation at intermediate lengthscales, predominantly using model protein systems including beta lactoglobulin and insulin but extending to A beta.
The unifying theme is understanding structure-function-processing relationships. My group comes from a diverse range of backgrounds, as does my funding. Daniel Loss received a Ph. He stayed there as postdoctoral researcher for four more years before moving to the US in From to he worked as postdoctoral researcher in the group of Prof.
He received several prestigious fellowships, is a Fellow of the American Physical Society, has been awarded the Humboldt Research Prize inand the Marcel Benoist Prize in — the most prestigious science prize in Switzerland see www. He is married and has two sons. Part of this work is related to quantum information processing QIP --quantum computing and quantum communication in solid state systems with focus on spin qubits, where Loss and collaborators made seminal contributions.
Their theoretical predictions and proposals have stimulated many further investigations, and in particular many experimental programs on spin qubits worldwide.
Current research includes spin relaxation and decoherence in quantum dots due to spin-orbit and hyperfine interaction; non-Markovian spin dynamics in bosonic and nuclear spin environments; generation and characterization of non-local entanglement with quantum dots, superconductors, Luttinger liquids or Coulomb scattering in interacting 2DEGs; spin currents in magnetic insulators and in semiconductors; spin Hall effect in disordered systems; spin orbit effects in transport and noise; asymmetric quantum shot noise in quantum dots; entanglement transfer from electron spins to photons; QIP with spin qubits in quantum dots and molecular magnets; macroscopic quantum phenomena spin tunneling and coherence in molecular and nanoscale magnetism.
His research prior to was in particle physics, in particular the study of high-energy diffraction scattering. After this, he applied methods of quantum field theory and the renormalization group to condensed matter, especially to critical phenomena in both pure and disordered equilibrium and non-equilibrium systems.
In the s he helped develop the theory of conformal invariance and its applications to these problems, ideas which also had an impact in string theory and the physics of black holes. In the s he used conformal invariance to derive many exact results in percolation and related probabilistic problems.
More recently Professor Cardy has worked on questions of quantum entanglement and non-equilibrium dynamics in many-body systems. His first postdoctoral appointment was at the Department of Astronomy, University of California, Berkeley.
He spent the next eight years at the Institute for Astronomy at Cambridgebeginning as a Postdoctoral Research Assistant, then in taking a position as a Senior Assistant in Research and eventually becoming Assistant Director of Research. InEfstathiou was appointed to the Savilian Chair of Astronomy at Oxford Universitywhere he served as Head of Astrophysics for 6 years during this tenure.
He returned to Cambridge in and continues to hold the position of Professor of Astrophysics He has served as Director of the Institute of Astronomy from until when he was appointed and remains currently as the first Director of the new Kavli Institute for Cosmology at Cambridge. From he became a Fellow of the Royal Astronomical Society, in and awarded as a member of the Royal Society and Institute of Physics respectively. In American Institute of Physics awarded Efstathiou along with his collaborator Simon White the Heineman Prize for Astrophysics in recognition of their pioneering research into evolution of structure in the Universe from the earliest times to the present epoch, as examples of outstanding work in the field of astrophysics.
Professor Efstathiou has wide interests in theoretical and observational cosmology and has contributed to studies of large-scale structure in the Universe, galaxy formation, dark energy and the cosmic microwave background radiation. Efstathiou is Chair of the Cambridge Planck Analysis Centre, which is developing methods to analyze the data that will be collected by the Planck satellite. Michael Coey was born in in Belfast. He grew up in varous places — England, Germany, Hong Kong — determined by the postings of his father, a chaplain to the British army.
After graduating from Cambridge ina providential bout of jaundice, contracted while working for a year and a half as a teacher of English and Physics in India, led to a month of enforced bed rest and the leisure to read Physical Principles of Magnetism by his future PhD supervisor, A.
Morrish, from cover to cover. When he moved to Winnipeg in to start research, he began to use the new method of Mössbauer spectroscopy to investigate the properties of disordered magnetic oxides, including nanoparticles of gFe 2 O 3where he was able to show that the surface spins were misaligned.
He has worked on different aspects of magnetism ever since. Although his main work there was on electronic phase transitions, he benefitted from the stimulating scientific environment to pursue interests in amorphous magnetism and magnetic order in natural minerals, with the first demonstration of random spin freezing due to frustrated antiferromagnetic interactions. Appointed Attaché de Recherche in the CNRShe helped to organize the first International Colloquium on Metal-Insulator transitions two years later, where the innovation of a beer- and wine-fueled poster session has proved enduring.
Quimica sabbatical at IBM Yorktown Heights crystallized the ideas for his first book, a monograph on Magnetic Glassesserie professor de quimica, written with Kishin Moorjani, which included a classification of the varieties convenio odontologico em ribeirao preto magnetic order that occur in amorphous professor.
A move back to Ireland in to take up a lectureship in Physics at Trinity College, Dublin serie a calculated risk. It was no obvious choice for an academic career in magnetism, but it worked out well, thanks to continued close links with colleagues in France, and support from the first European Framework Programmes which offered decent funding for collaborative applied research.
Having set up a melt spinner with a sewing machine motor and an ancient rf furnace to continue to investigate amorphous and nanocrystalline rare-earth transition-metal alloys, Michael Coey was well placed to follow up the discovery in of the long-sought iron-based rare earth permanent magnet. Nd 2 Fe 14 B transformed applied magnetism. At its height, Coey coordinated the research of 80 groups across the continent, with the help of three colleagues. A monograph on Permanent Magnetism written with Ralph Skomski followed in A highlight from that period was the discovery of a new iron-based rare-earth magnet Sm 2 Fe 17 N 3which was produced by a novel gas-phase interstitial modification process.
The company later went on to develop a business manufacturing wafer-scale magnetic annealing tools for the magnetic recording and semiconductor industry. Opportunites existed to exploit half-metals as sources of spin-polarized electrons in new thin film devices. Investigations of the magnetoresistance of nanoscale oxide point contacts led to the discovery of powder magnetoresistance in pressed powder compacts.
The choice was guided by a desire to pick problems off the beaten track, where there was little need for sophisticated equipment.
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A happy consequence of the como consultar se o nome esta sujo boom serie Ireland in the s was the establishment in of Science Foundation Ireland, a properly-funded agency with a mission to secure a foothold professor the country in the future knowledge economy. In a first jump-start round of funding, a dozen large five-year grants were awarded, serie professor de quimica, purely the basis of internationally peer-reviewed excellence, to support a quimica investigator and their team, and build up their equipment base.
Together with three colleagues who had also secured awards for programs in other areas of naonscience at Trinity College, Coey promoted the establishment of a purpose-built nanoscience research institute on the College campus. The new building incorporates his brainchild, the Science Gallery, which is dedicated to an innovative program of science outreach for young adults.
With the new facilities, Coey has embarked on a program of research in spin electronics based on magnetic tunnel junction structures, and he has also explored a new group of materials which, in the form of thin films or nanoparticles, mysteriously exhibit ferromagnetic properties without the 3 d or 4 f moments that usually characterize ferromagnets.
He has written many papers, reviws and books, and has received a series of honours unique for any contemporary Irish scientist, including Fellow of the Royal Society, and Foreign Associate of the National Academy of Science. He has held visiting professorships, mostly in France, and currently at the National University of Singapore.
A tua Energia II...
His textbook on Magnetism and Magnetic Professor will help to define the subject for the next decade. Both quimica inclination and experience, quimica, he sees quimica as the outstanding collective endeavour of humanity. Professor Markus Buttiker received a diploma in theoretical quimica in from the Federal Institute of Technology in Zurich, Switzerland. In he received a Ph.
Quimica to he was a postdoctoral fellow at IBM T. Work on time scales in quantum tunneling was followed by predictions of sample specific mesoscopic phenomena, like persistent currents and Aharonov-Bohm effects in normal metal rings. A theory of quantum coherent transport for multiterminal conductors was developed and applied to the quantum Hall effect.
This was followed by a theory of current noise quimica coherent conductors. In he was nominated full professor at the University of Geneva. He directed the department of theoretical physics from to Work in Geneva centered on dynamic conductance phenomena, quantum pumping, serie professor, few particle orbital entanglement in electrical conductors and the statistics of electron transport. Markus Buttiker is serie author or coauthor of more than papers.
Ferenc Krausz was born in Mor, Hungary, on 17 May He was a bolsa amarela resumo his M. He joined the Department of Electrical Engineering as an Associate Professor in and became Full Professor in the same department in His research includes nonlinear light-matter interactions, ultrashort light pulse generation from the infrared to the X-ray spectral range, and studies of ultrafast microscopic processes.
His most recent research direction in attosecond physics is the control and real-time observation of the atomic-scale motion of electrons and the development of brilliant X-ray and charged-particle sources for applications in physics and biomedicine. Como desamarrar uma pessoa de um feitico feels greatly privileged to live at a time when borders between these and other countries in Europe are being peacefully dismantled.
Imamoglu received his Ph. D from Stanford University with a dissertation on electromagnetically induced transparency and lasers without inversion. He was promoted to Associate Professorship in and to full Professorship in Imamoglu has pioneered the use of quantum dots in study of quantum optical phenomena. In particular, his group demonstrated the first quantum dot single photon source, the Purcell effect in quantum dot cavity-QED, and the use of photon correlation spectroscopy to understand quantum dot physics.
Hiss current research interests include the study of strongly correlated systems using quantum optical techniques. He is presently the director of Ecole normale supérieure. In he was a post-doc at the University of Roma 1 Italy.
He has published more than papers in major international journals and he is the coauthor of two books: Virasoro, and "Information, Physics, and Computation", written with A. Together with his collaborators, he has made important contributions to the theory of spin glasses, the hierarchical structure of metastable states ultrametricityand the non-self averageness of some physical properties.
This has led to the construction of the cavity method, a general method of approach to disordered systems that has found applications in several branches of science. The works of Marc Mézard ranges from disordered systems in physics, pinning of random interfaces - manifolds, aging dynamics and modification of the fluctuation dissipation theorem in spin glasses and other disordered systems, level correlations in disordered electronic systems, theory of structural glasses, disordered superconductors… to the interface of physics and biology theory of heteropolymers and their elongation properties, theory of learning in neural networks,…to information theory and computer science error correcting codes, satisfiability of random Boolean formulae, group testing, broadcast and reconstruction, compressed sensing,…and also to econophysics wealth condensation, order books dynamics.
Among his major contributions to these fields outside of physics one can mention seminal works on random matching and travelling salesman problems, the computation of the capacity of binary perceptrons, the discovery of a new efficient algorithm "survey propagation" for solving the K-satisfiability problem, and a new approach to compressed sensing.
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