Optica Publishing Group (@opticapubsgroup) 's Twitter Profile
Optica Publishing Group

@opticapubsgroup

News, updates, and current research from Optica Publishing Group - home of the largest and most-cited collection of peer-reviewed #optics and #photonics content

ID: 960907674278879232

linkhttps://opg.optica.org calendar_today06-02-2018 16:06:57

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Need quick insights on journal articles and conference papers? #OPG_OpticaAI helps you discover and summarize recent research. Try the beta version now and simplify your research workflow! #AcademicResearch #AIAssistant bit.ly/3HDurdM

Need quick insights on journal articles and conference papers? #OPG_OpticaAI helps you discover and summarize recent research. Try the beta version now and simplify your research workflow! #AcademicResearch #AIAssistant bit.ly/3HDurdM
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Via #OPG_OpEx: Underwater long-range LiDAR based on wide baseline polarized light-sheet illumination bit.ly/3I5FPiQ #ScheimpflugImaging #PolarizationSuppression Chinese Academy of Sciences

Via #OPG_OpEx: Underwater long-range LiDAR based on wide baseline polarized light-sheet illumination bit.ly/3I5FPiQ #ScheimpflugImaging #PolarizationSuppression <a href="/CAS__Science/">Chinese Academy of Sciences</a>
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On this #ThankYouEditorsTuesday, we'd like to thank our outgoing #OPG_JOSA_B Topical Editor Sergey Sergeyev Aston University. Thank you for supporting Optica Publishing Group and in particular JOSA B!

On this #ThankYouEditorsTuesday, we'd like to thank our outgoing #OPG_JOSA_B Topical Editor Sergey Sergeyev <a href="/AstonUniversity/">Aston University</a>. Thank you for supporting <a href="/OpticaPubsGroup/">Optica Publishing Group</a> and in particular JOSA B!
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An Editors' Pick via #OPG_JOSA_A: Crosstalk of ring Airy Gaussian vortex beams disturbed by hazy scattering media and its suppression bit.ly/4lHAtJh #ScatteringMedia #OpticalVortexBeams #LaserCommunication

An Editors' Pick via #OPG_JOSA_A: Crosstalk of ring Airy Gaussian vortex beams disturbed by hazy scattering media and its suppression bit.ly/4lHAtJh #ScatteringMedia #OpticalVortexBeams #LaserCommunication
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An Editors' Pick via #OPG_BOEx: Multi-parametric functional optical spectroscopy to monitor the metabolic and vascular changes in small head and neck tumors in vivo with radiation stress bit.ly/4nBfpWD #RadiationTherapy #TumorHypoxia University of Kentucky

An Editors' Pick via #OPG_BOEx: Multi-parametric functional optical spectroscopy to monitor the metabolic and vascular changes in small head and neck tumors in vivo with radiation stress bit.ly/4nBfpWD #RadiationTherapy #TumorHypoxia <a href="/universityofky/">University of Kentucky</a>
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Via #OPG_OL: Intrusion detection-embedded chaotic encryption via hybrid modulation for data center interconnects bit.ly/46uIyMP #ChaoticEncryption #Segmentation UESTC-电子科技大学

Via #OPG_OL: Intrusion detection-embedded chaotic encryption via hybrid modulation for data center interconnects bit.ly/46uIyMP #ChaoticEncryption #Segmentation <a href="/UESTC1956/">UESTC-电子科技大学</a>
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Via #OPG_Optica: Extended monocular 3D imaging via the fusion of diffraction- and polarization-based depth cues opg.optica.org/optica/fulltex… #DiffractiveOpticalElements #3DImaging Tsinghua University

Via #OPG_Optica: Extended monocular 3D imaging via the fusion of diffraction- and polarization-based depth cues opg.optica.org/optica/fulltex… #DiffractiveOpticalElements #3DImaging <a href="/Tsinghua_Uni/">Tsinghua University</a>
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On this #WelcomeNewEditorsWednesday, we'd like to welcome our incoming #OPG_OpEx Associate Editors Michael Frosz Max Planck Institute for the Science of Light; Shu Jia Georgia Tech; and Zhaoyang Li, Shanghai Institute of Optics and Fine Mechanics. Thank you for supporting Optica Publishing Group and Optics Express!

On this #WelcomeNewEditorsWednesday, we'd like to welcome our incoming #OPG_OpEx Associate Editors Michael Frosz <a href="/MPI_Light/">Max Planck Institute for the Science of Light</a>; Shu Jia <a href="/GeorgiaTech/">Georgia Tech</a>; and Zhaoyang Li, Shanghai Institute of Optics and Fine Mechanics. Thank you for supporting <a href="/OpticaPubsGroup/">Optica Publishing Group</a> and Optics Express!
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An Editors' Pick via #OPG_JOSA_B: Multi-watt output power in-band-pumped Ho:KLu(WO4)2 laser bit.ly/4kpVNBO #MonoclinicDoubleTungstates #InBandPumping

An Editors' Pick via #OPG_JOSA_B: Multi-watt output power in-band-pumped Ho:KLu(WO4)2 laser bit.ly/4kpVNBO #MonoclinicDoubleTungstates #InBandPumping
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Read a top-viewed #OpticaOpen preprint: Genetically programmable optical random neural networks preprints.opticaopen.org/articles/prepr…

Read a top-viewed #OpticaOpen preprint: Genetically programmable optical random neural networks preprints.opticaopen.org/articles/prepr…
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On this #ThankYouEditorsThursday, we'd like to thank our outgoing #OPG_JOSA_A Topical Editor Małgorzata Szczerska, Gdańsk University of Technology. Thank you for supporting Optica Publishing Group and in particular JOSA A!

On this #ThankYouEditorsThursday, we'd like to thank our outgoing #OPG_JOSA_A Topical Editor Małgorzata Szczerska, Gdańsk University of Technology. Thank you for supporting <a href="/OpticaPubsGroup/">Optica Publishing Group</a> and in particular JOSA A!
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Via #OPG_AO: Laser-absorption sensor suite for crank-angle-resolved, in situ measurements in the exhaust of a high-performance internal combustion engine—I: temperature and H2O bit.ly/44RgLVG #ThermalCombustionEngines #Thermometry Stanford University

Via #OPG_AO: Laser-absorption sensor suite for crank-angle-resolved, in situ measurements in the exhaust of a high-performance internal combustion engine—I: temperature and H2O bit.ly/44RgLVG #ThermalCombustionEngines #Thermometry <a href="/Stanford/">Stanford University</a>
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An Editors' Pick via #OPG_OpEx: Room temperature CW operation of 1.3 μm quantum dot triple-lattice photonic crystal surface-emitting lasers with buried structure bit.ly/4eEaH6o #LaserCrystals #QuantumDots Chinese Academy of Sciences

An Editors' Pick via #OPG_OpEx: Room temperature CW operation of 1.3 μm quantum dot triple-lattice photonic crystal surface-emitting lasers with buried structure bit.ly/4eEaH6o #LaserCrystals #QuantumDots <a href="/CAS__Science/">Chinese Academy of Sciences</a>
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Volume 64 Issue 20 of #OPG_AO is now live: bit.ly/3GCMS27 On the cover is a 50 kW inductively coupled plasma torch at the University of Texas at Austin. See details at Murry and Clemens et al.: bit.ly/407urJB

Volume 64 Issue 20 of #OPG_AO is now live: bit.ly/3GCMS27

On the cover is a 50 kW inductively coupled plasma torch at the University of Texas at Austin.

See details at Murry and Clemens et al.: bit.ly/407urJB
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Via #OPG_OpticaQ: Boosting photon-number-resolved detection rates of transition-edge sensors by machine learning bit.ly/4eiu9Fs #QuantumDetectors #MachineLearning Imperial College London

Via #OPG_OpticaQ: Boosting photon-number-resolved detection rates of transition-edge sensors by machine learning bit.ly/4eiu9Fs #QuantumDetectors #MachineLearning <a href="/imperialcollege/">Imperial College London</a>
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An Editors' Pick via #OPG_OpEx: Experimental comparison of X-ray ptychographic and holographic nanotomography of metal-stained neuronal tissue bit.ly/3GyOl9F #XRayNanotomagraphy #SpatialResolution PSI Paul Scherrer Institut

An Editors' Pick via #OPG_OpEx: Experimental comparison of X-ray ptychographic and holographic nanotomography of metal-stained neuronal tissue bit.ly/3GyOl9F #XRayNanotomagraphy #SpatialResolution <a href="/psich_en/">PSI Paul Scherrer Institut</a>
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Via #OPG_OL: High-SNR OAM mode division multiplexing based on delta-sigma modulation using a power domain layer bit.ly/407j6t7 #SignalTransmission #Multiplexing Beijing Institute of Technology

Via #OPG_OL: High-SNR OAM mode division multiplexing based on delta-sigma modulation using a power domain layer bit.ly/407j6t7 #SignalTransmission #Multiplexing <a href="/BIT1940/">Beijing Institute of Technology</a>
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An Editors' Pick via #OPG_OMEx: Can thermal emission from time-varying media be described semiclassically? [Invited] bit.ly/3TXAYmy #QuantumElectrodynamics #TemporalMetamaterial UPNA - Universidad

An Editors' Pick via #OPG_OMEx: Can thermal emission from time-varying media be described semiclassically? [Invited] bit.ly/3TXAYmy #QuantumElectrodynamics #TemporalMetamaterial <a href="/UNavarra/">UPNA - Universidad</a>