#inversedesign resultados de búsqueda

No hay resultados para "#inversedesign"
No hay resultados para "#inversedesign"

Array-level inverse design of nonideal active metasurfaces with limited phase shift and covarying amplitude applies to arbitrary target functions and metasurface platforms, such as beam steering with plasmonic structures @Caltech @PhotonicsMeetup #POM20ju #POM20AI #InverseDesign

PrachiThureja's tweet image. Array-level inverse design of nonideal active metasurfaces with limited phase shift and covarying amplitude applies to arbitrary target functions and metasurface platforms, such as beam steering with plasmonic structures

@Caltech @PhotonicsMeetup #POM20ju #POM20AI #InverseDesign
PrachiThureja's tweet image. Array-level inverse design of nonideal active metasurfaces with limited phase shift and covarying amplitude applies to arbitrary target functions and metasurface platforms, such as beam steering with plasmonic structures

@Caltech @PhotonicsMeetup #POM20ju #POM20AI #InverseDesign
PrachiThureja's tweet image. Array-level inverse design of nonideal active metasurfaces with limited phase shift and covarying amplitude applies to arbitrary target functions and metasurface platforms, such as beam steering with plasmonic structures

@Caltech @PhotonicsMeetup #POM20ju #POM20AI #InverseDesign
PrachiThureja's tweet image. Array-level inverse design of nonideal active metasurfaces with limited phase shift and covarying amplitude applies to arbitrary target functions and metasurface platforms, such as beam steering with plasmonic structures

@Caltech @PhotonicsMeetup #POM20ju #POM20AI #InverseDesign

Our paper on #MachineLearning assisted #InverseDesign of single-material variable-index multilayer films is published @Nanophotonics_J degruyter.com/document/doi/1…

ABoltasseva's tweet image. Our paper on #MachineLearning assisted #InverseDesign of single-material variable-index multilayer films is published @Nanophotonics_J degruyter.com/document/doi/1…

New review: Large-scale photonic inverse design: computational challenges and breakthroughs #photonicdesign #inversedesign degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. New review:

Large-scale photonic inverse design: computational challenges and breakthroughs

#photonicdesign
#inversedesign

degruyter.com/document/doi/1…

Broadband mode exchanger based on subwavelength Y-junctions #siliconphotonics #inversedesign degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. Broadband mode exchanger based on subwavelength Y-junctions

#siliconphotonics
#inversedesign

degruyter.com/document/doi/1…

New research: Integrating deep convolutional surrogate solvers and particle swarm optimization for efficient inverse design of plasmonic patch nanoantennas #inversedesign #plasmonics #nanoantennas degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. New research: Integrating deep convolutional surrogate solvers and particle swarm optimization for efficient inverse design of plasmonic patch nanoantennas

#inversedesign
#plasmonics
#nanoantennas

degruyter.com/document/doi/1…

And winner of the #Photonic #InverseDesign Challenge @ #PhotonicsWest is... Sabyasachi Barik. Congrats on an excellent design! Thx 2 all participants; can't wait 4 the next edition in March @ #OFC20. And thx 2 @awscloud 4 providing all #cloud #HPC power 4 the competition. #FDTD

Lumerical's tweet image. And winner of the #Photonic #InverseDesign Challenge @ #PhotonicsWest is... Sabyasachi Barik. Congrats on an excellent design! Thx 2 all participants; can't wait 4 the next edition in March @ #OFC20. And thx 2 @awscloud 4 providing all #cloud #HPC power 4 the competition.
#FDTD

An Editors’ Pick via #OPG_OpEx: Ultra-low-loss broadband multiport optical splitters ow.ly/8ML750NVroa #OpticalDesign #InverseDesign @UChile_Beauchef

OpticaPubsGroup's tweet image. An Editors’ Pick via #OPG_OpEx: Ultra-low-loss broadband multiport optical splitters ow.ly/8ML750NVroa #OpticalDesign #InverseDesign @UChile_Beauchef

Via #OSA_JOSA_A: Efficient hybrid method for the modal analysis of optical microcavities and nanoresonators ow.ly/ZkgN50FKlPt #Nanophotonics #InverseDesign @InstitutOptique

OpticaPubsGroup's tweet image. Via #OSA_JOSA_A: Efficient hybrid method for the modal analysis of optical microcavities and nanoresonators ow.ly/ZkgN50FKlPt #Nanophotonics #InverseDesign @InstitutOptique

via #OSA_OMEx: Spectral domain inverse design for accelerating nanocomposite metamaterials discovery ow.ly/g4Pe50xt0gk #Metamaterials #InverseDesign @PurdueECE

OpticaPubsGroup's tweet image. via #OSA_OMEx: Spectral domain inverse design for accelerating nanocomposite metamaterials discovery ow.ly/g4Pe50xt0gk #Metamaterials #InverseDesign @PurdueECE

For #SpotlightSunday view Spotlight Analysis of the #OPG_JOSA_B paper Topology optimization framework for designing efficient thermo-optical phase shifters ow.ly/GUQV50QXONU Spotlight Summary by Jorge Parra #InverseDesign #IntegratedPhotonics

OpticaPubsGroup's tweet image. For #SpotlightSunday view Spotlight Analysis of the #OPG_JOSA_B paper Topology optimization framework for designing efficient thermo-optical phase shifters ow.ly/GUQV50QXONU Spotlight Summary by Jorge Parra #InverseDesign #IntegratedPhotonics

New article: Free electrons spin-dependent Kapitza–Dirac effect in two-dimensional triangular optical lattice #radiativecooling #inversedesign #ultrahightemperatureobjects degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. New article:
Free electrons spin-dependent Kapitza–Dirac effect in two-dimensional triangular optical lattice

#radiativecooling
#inversedesign
#ultrahightemperatureobjects

degruyter.com/document/doi/1…

New techniques can determine when it is advantageous for photonic devices to be manufactured with multiple materials - and when you're better off sticking to one: degruyter.com/document/doi/1… #photonics #inversedesign #materialsscience

Nanophotonics_J's tweet image. New techniques can determine when it is advantageous for photonic devices to be manufactured with multiple materials - and when you're better off sticking to one:
degruyter.com/document/doi/1…
#photonics #inversedesign #materialsscience

Via #OPG_OpticaQ: Multiqubit quantum state preparation enabled by topology optimization bit.ly/3ALlEDu #InverseDesign #PlasmonWaveguides @UAM_Madrid

OpticaPubsGroup's tweet image. Via #OPG_OpticaQ: Multiqubit quantum state preparation enabled by topology optimization bit.ly/3ALlEDu #InverseDesign #PlasmonWaveguides @UAM_Madrid

New article: Simultaneous thermal camouflage and radiative cooling for ultrahigh-temperature objects using inversely designed hierarchical metamaterial #radiativecooling #inversedesign #ultrahightemperatureobjects degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. New article:
Simultaneous thermal camouflage and radiative cooling for ultrahigh-temperature objects using inversely designed hierarchical metamaterial

#radiativecooling
#inversedesign
#ultrahightemperatureobjects

degruyter.com/document/doi/1…

An Editors' Pick via #OPG_JOSA_A: Three-dimensional freeform reflector design with a microfacet surface roughness model ow.ly/L2jA50Sfn3P #OpticalScattering #InverseDesign @TUeindhoven

OpticaPubsGroup's tweet image. An Editors' Pick via #OPG_JOSA_A: Three-dimensional freeform reflector design with a microfacet surface roughness model ow.ly/L2jA50Sfn3P #OpticalScattering #InverseDesign @TUeindhoven

New article: Inverse design of color routers in CMOS image sensors: toward minimizing interpixel crosstalk #inversedesign #interpixelcrosstalk #imagesensor degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. New article:

Inverse design of color routers in CMOS image sensors: toward minimizing interpixel crosstalk

#inversedesign
#interpixelcrosstalk
#imagesensor

degruyter.com/document/doi/1…

We're back w/ our next #webinar Apr 1 - #Photonic #InverseDesign for #Manufacturable #Devices. We demo feature size constraints w/ shape-based optimization and topology-based inverse design. Full info & reg: lumerical.com/learn/webinars/ #FDTD #multiphysics #adjoint #nanophotonics

Lumerical's tweet image. We're back w/ our next #webinar Apr 1 - #Photonic #InverseDesign for #Manufacturable #Devices. We demo feature size constraints w/ shape-based optimization and topology-based inverse design. Full info & reg:
lumerical.com/learn/webinars/
#FDTD #multiphysics #adjoint #nanophotonics

Catch up on Prof. Fan's research published in the journal, including his two most recent papers on #InverseDesign of "lightweight broadband reflector for relativistic lightsail propulsion" and "photonic crystals through automatic differentiation." acspubs.co/k0Bv30r4pNv

ACSPhotonics's tweet image. Catch up on Prof. Fan's research published in the journal, including his two most recent papers on #InverseDesign of "lightweight broadband reflector for relativistic lightsail propulsion" and "photonic crystals through automatic differentiation." acspubs.co/k0Bv30r4pNv

Loading...

Something went wrong.


Something went wrong.


United States Trends