Joannopoulos, John D., 1947-....
John D. Joannopoulos American physicist
Joannopoulos, J. D. (John D.), 1947-
Joannopoulos, John D.
Joannopoulos, J. D.
Joannopoulos, J. D. (John D.)
VIAF ID: 108575458 (Personal)
Permalink: http://viaf.org/viaf/108575458
Preferred Forms
- 200 _ | ‡a Joannopoulos ‡b John D. ‡f 1947-....
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- 100 1 _ ‡a Joannopoulos, J. D. ‡q (John D.)
- 100 1 _ ‡a Joannopoulos, J. D. ‡q (John D.), ‡d 1947-
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- 100 1 _ ‡a Joannopoulos, John D, ‡d 1947-
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- 100 1 _ ‡a Joannopoulos, John D. ‡d 1947-
- 100 1 _ ‡a Joannopoulos, John D. ‡d 1947-
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- 100 1 _ ‡a Joannopoulos, John D., ‡d 1947-....
- 100 0 _ ‡a John D. Joannopoulos ‡c American physicist
4xx's: Alternate Name Forms (30)
5xx's: Related Names (1)
Works
Title | Sources |
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20th International Conference on the Physics of Semiconductors, Thessaloniki, Greece, August 6-10, 1990. | |
Fizika gidrogenizirovannogo amorfnogo kremniâ. | |
Fotonikku kesshō : Hikari no nagare o kata ni hamekomu | |
Maxwell equation simulations of coherent optical photon emission from shock waves in crystals. | |
Meep: A flexible free-software package for electromagnetic simulations by the FDTD method | |
Metal–insulator–semiconductor optoelectronic fibres | |
Microcavities based on multimodal interference. | |
Microcavity confinement based on an anomalous zero group-velocity waveguide mode. | |
Microstructure effects for Casimir forces in chiral metamaterials | |
Minding the gap | |
Modeling of nanophotonics | |
Multipole-cancellation mechanism for high-Q cavities in the absence of a complete photonic band gap | |
Nanophotonic particle simulation and inverse design using artificial neural networks. | |
The Nature of a Wet Electron | |
New photonic crystal system for integrated optics | |
Nonlinear harmonic generation and devices in doubly resonant Kerr cavities | |
Nonlinear photonic crystals near the supercollimation point. | |
Novel optical phenomena with photonic crystals | |
Observation of trapped light within the radiation continuum | |
Off-diagonal occupation numbers in local-density theory | |
Optically Thin Metallic Films for High-Radiative-Efficiency Plasmonics. | |
Optoelectronic Fibers via Selective Amplification of In-Fiber Capillary Instabilities. | |
Perfect single-sided radiation and absorption without mirrors | |
Performance analysis of experimentally viable photonic crystal enhanced thermophotovoltaic systems | |
Perturbation theory for Maxwell's equations with shifting material boundaries. | |
Photonic-bandgap microcavities in optical waveguides | |
Photonic-crystal slow-light enhancement of nonlinear phase sensitivity | |
Photonic crystals : molding the flow of light | |
Photonic crystals : the road from theory to practice | |
The physics of hydrogenated amorphous silicon. | |
Point defect geometries in inverted opal photonic crystals. | |
Processing and properties of centimeter-long, in-fiber, crystalline-selenium filaments | |
Publisher Correction: Maximal spontaneous photon emission and energy loss from free electrons | |
Purcell effect in nonlinear photonic structures: a coupled mode theory analysis. | |
Quantum theory of materials | |
Repulsive and attractive Casimir forces in a glide-symmetric geometry | |
Self-assembled fibre optoelectronics with discrete translational symmetry | |
Self-assembly lights up | |
Shrinking light to allow forbidden transitions on the atomic scale. | |
Silicon-in-silica spheres via axial thermal gradient in-fibre capillary instabilities | |
Single-photon all-optical switching using waveguide-cavity quantum electrodynamics | |
Slow-light, band-edge waveguides for tunable time delays. | |
Slow-light enhancement of radiation pressure in an omnidirectional-reflector waveguide | |
Spatio-temporal theory of lasing action in optically-pumped rotationally excited molecular gases | |
Spawning rings of exceptional points out of Dirac cones | |
Spherical cloaking using nonlinear transformations for improved segmentation into concentric isotropic coatings. | |
Structural anisotropy and orientation-induced Casimir repulsion in fluids | |
Structure, preparation, and devices | |
Superheating and induced melting at semiconductor interfaces. | |
Superprism effect based on phase velocities. | |
Surface-emitting fiber lasers | |
Surface-plasmon-assisted guiding of broadband slow and subwavelength light in air. | |
Switching through symmetry breaking in coupled nonlinear micro-cavities. | |
Synthesis and observation of non-Abelian gauge fields in real space | |
Tailoring high-temperature radiation and the resurrection of the incandescent source | |
Tailoring photonic metamaterial resonances for thermal radiation | |
Temporal coupled-mode theory for the Fano resonance in optical resonators | |
Theoretical ingredients of a Casimir analog computer | |
Theory of defect states in glassy selenium | |
Thermal radiation from photonic crystals: a direct calculation. | |
Thermally-drawn fibers with spatially-selective porous domains | |
Topological magnetoplasmon. | |
TOPOLOGICAL MATTER. Experimental observation of Weyl points. | |
Total energies in Se. I. The trigonal crystal | |
Toward high-energy-density, high-efficiency, and moderate-temperature chip-scale thermophotovoltaics | |
Toward photonic-crystal metamaterials: Creating magnetic emitters in photonic crystals | |
Towards graphene plasmon-based free-electron infrared to X-ray sources | |
A TRANSIENT SEMI-METALLIC LAYER IN DETONATING NITROMETHANE | |
Transparent and 'opaque' conducting electrodes for ultra-thin highly-efficient near-field thermophotovoltaic cells | |
Transparent displays enabled by resonant nanoparticle scattering. | |
Ultra-flat bands in two-dimensional photonic crystals | |
Ultralow-power all-optical switching | |
Virtual photons in imaginary time: Computing exact Casimir forces via standard numerical electromagnetism techniques | |
Waveguide branches in photonic crystals | |
Wavelength-scalable hollow optical fibres with large photonic bandgaps for CO2 laser transmission | |
Weyl points and line nodes in gyroid photonic crystals | |
What is — and what is not — an optical isolator | |
Wireless power transfer via strongly coupled magnetic resonances | |
Физика гидрогенизированного аморфного кремния, 1987: | |
フォトニック結晶 : 光の流れを型にはめ込む |