Session information

Abstract password authentication.
Password is required to view the abstract. Please enter a password to authenticate.

Poster Session

Poster

Thu. Mar 30, 2023 1:30 PM - 3:30 PM Kanda-Myoujin Hall (1F)

[P-01] Resonant Photonic Crystal Interferometry for Sensing

Isabel Barth1, *Thomas F Krauss1 (1. York Univ. )

[P-03] Light Trapping in a 3D Reciprocally Engineered Structure

*Meraj E Mustafa1, Manfred Eich1,2, Alexander Yu. Petrov1,2 (1. Institute of Optical and Electronic Materials, Hamburg University of Technology, Germany, 2. Institute of Photoelectrochemistry, Helmholtz Zentrum-Hereon, Germany)

[P-04] Short-Pulse, High-Peak-Power Photonic-Crystal Surface-Emitting Lasers based on Self-Evolving Photonic Crystals with Saturable Absorbers

*Ryohei Morita1, Takuya Inoue1, Takuma Ueda1, Susumu Noda1 (1. Kyoto University)

[P-05] Analysis of photonic band structure for InP/Si hetero twist-stacked photonic crystal slabs

*Yuki Ishii1, Stepan Trushin1, Guangtai Lu2, Satoshi Iwamoto2, Yasutomo Ota1 (1. Keio Univ., 2. RCAST, Univ. Tokyo)

[P-06] Realtime k-clock FMCW LSPCW LiDAR with loop recording

*Shumpei Yamazaki1, Takemasa Tamanuki1, Toshihiko Baba1 (1. Yokohama National University)

[P-07] Large-area radiation-loss-free zero-index states in photonic crystals

*Sho Watanabe1,2, Kento Kawasaki1,2, Yuto Moritake1, Masaaki Ono2,3, Eiichi Kuramochi2,3, Masaya Notomi1,2,3 (1. Tokyo Tech, 2. NTT BRL, 3. NTT NPC)

[P-09] Binary metasurface for efficient Ultraviolet Fluorescence Collection

*Kezheng Li1, Augusto Martins2, Sanket Bohora3, Ashim Dhakal3, Emiliano Martins4, Thomas F Krauss1 (1. University of York, 2. Harvard University, 3. Phutung Research Institute, 4. Univeristy of Sao Paulo)

[P-10] Mid-infrared Molecular Fingerprint Detection with Chirped Dielectric Metasurface

*Kezheng Li1, Pin Dong1, Yue Wang1, Thomas F. Krauss1 (1. University of York)

[P-11] High transmission and polarization singularities in glide-symmetric photonic crystal waveguides with sharp bends

*Wei Dai1, Taiki Yoda2, Yuto Moritake1, Masaya Notomi1,2,3 (1. Tokyo Tech, 2. NTT BRL, 3. NTT NPC)

[P-12] Experimental Investigation for Meron Polarization Textures in Band Structures of Valley Photonic Crystals

*Hironobu Yoshimi1,2, Hibiki Kagami3, Sho Okada3, Wenbo Lin4, Tomohiro Amemiya3,5, Yasutomo Ota6, Nobuhiko Nishiyama3,5, Satoshi Iwamoto1,2 (1. RCAST, The Univ. of Tokyo, 2. IIS, The Univ. of Tokyo, 3. Department of Electrical and Electronic Engineering, Tokyo Institute of Technology, 4. KIS, The Univ. of Tokyo, 5. IIR, Tokyo Institute of Technology, 6. Department of Applied Physics and Physico-Informatics, Keio Univ.)

[P-17] Inverse design of CMOS-compatible silicon nitride nanophotonic resonators for integrated nonlinear optics systems

*Geun Ho Ahn1, Alexander D. White1, Jelena Vuckovic1 (1. Stanford University)

[P-18] Nonlocal Exciton-Photon Interaction and Phononic Hybridization in High-Q Nanobeam Cavities with hBN-Encapsulated Monolayer MoS2

Chenjiang Qian1, Viviana Villafañe1, Pedro Soubelet1, Andreas V. Stier1, *Jonathan J. Finley1 (1. Walter Schottky Institut and Physik Department, Technische Universität München, Am Coulombwall 4, 85748 Garching, Germany)

[P-19] High-Q Two-dimensional Photonic Crystal Nanocavity on Glass with a Top Glass Plate

*Ryusei Kawata1, Akinari Fujita1, Pholsen Natthajuks2, Satoshi Iwamoto2, Yasutomo Ota1 (1. Keio Univ., 2. Univ. Tokyo)

[P-20] A topological nanocavity in photonic crystal slabs exhibiting quadrupole topological phase

*Guangtai Lu1, Yasutomo Ota2, Satoshi Iwamoto1 (1. The University of Tokyo, 2. Keio University)

[P-21] Impact incorporating hole-radius modulation in large-scale hole-position optimization of photonic crystal nanocavities

*Eiichi Kuramochi1,2, Akihiko Shinya1,2, Masaya Notomi1,2 (1. Nanophotonics Center, NTT Corp., 2. NTT BRL)

[P-22] One Dimensional III-V Photonic Crystal Cavities on Silicon on Insulator for Frequency Comb Generation

*Loredana Maria Massaro1, Fabrice Raineri2 (1. C2N, CNRS-Université Paris Saclay, France , 2. Institut de Physique de Nice, Université Côte d’Azur, France )

[P-23] Numerical Design of a GaAs Nanobeam Cavity on a Silicon Nitride Waveguide for Efficiently Generating Single Photons by Resonant Excitation

*Natthajuks Pholsen1, Yasutomo Ota2, Satoshi Iwamoto1 (1. The University of Tokyo, 2. Keio University)

[P-24] Informatic optimization of diamond nanobeam nanocavity for quantum photonic interface

*Keisuke Hirotani1, Toshihiko Baba1 (1. Yokohama National University)

[P-25] Si photonic crystal slow-light waveguide optimized by informatics technology

*Keisuke Hirotani1, Makoto Okano2, Guangwei Cong2, Noritsugu Yamamoto2, Koji Yamada2, Toshihiko Baba1 (1. Yokohama National University, 2. Advanced Industrial Science and Technology)

[P-26] Excitability in a PhC nanolaser with an integrated saturable absorber

Maxime Delmulle1,2, Bruno Garbin1, *Loredana Maria Massaro1, Alexandre Bazin1, Isabelle Sagnes1, Konstantinos Pantzas1, Sylvain Combrie2, Alfredo De Rossi2, Fabrice Raineri1,3 (1. Université Paris-Saclay, CNRS, Centre de Nanosciences et de Nanotechnologies, 91120 Palaiseau, France, 2. Thales Research and Technology, Campus Polytechnique, 1 avenue Augustin Fresnel, 91767 Palaiseau, France, 3. Université Côte d’Azur, Institut de Physique de Nice, CNRS–UMR 7010, Sophia Antipolis, France)

[P-27] Strong Chiral Light-Matter Interactions in a Waveguide-Coupled Photonic Crystal Nanocavity

*Nicholas John Martin1, Dominic Hallett1, Mateusz Duda1, Luke Brunswick 1, René Dost1, Luke Wilson1 (1. University of Sheffield)

[P-28] Diamond Microdisk Resonators for Group-IV Color Center Cavity QED

*Jakob Grzesik1, Daniel Riedel1, Hope Lee1, Daniil Lukin1, Dominic Catanzaro1, Eran Lustig1, Jean-Michel Borit1, Jelena Vuckovic1 (1. Stanford University)

[P-29] Improving quality factors of hexapole point-defect photonic crystal nanocavities

*Kenta Takata1,2, Eiichi Kuramochi1,2, Akihiko Shinya1,2, Masaya Notomi1,2,3 (1. NTT Nanophotonics Center, 2. NTT Basic Research Laboratories, 3. Tokyo Institute of Technology)

[P-30] Fabrication of 3D Photonic Band Gap Crystals from Silicon

*Melissa J Goodwin1, Cornelis A M Harteveld1, Lars J Corbijn van Willenswaard1, Timon J Vreman1, Andreas S Schulz1, Diana A Grishina1, Willem L Vos1 (1. University of Twente)

[P-31] Photonic Energy Density and Scattering from Random and Periodic Arrays of Silicon Pillars

*Melissa J Goodwin1, Ozan Akdemir1, Linda Bitenc1, Ad Lagendijk1, Willem L Vos1 (1. University of Twente)

[P-32] Efficient Slow Light Grating Beam Scanner and 4D LiDAR Action

*Saneyuki Suyama1, Shota Nawa1, Makoto Okano2, Guangwei Cong2, Noritsugu Yamamoto2, Koji Yamada2, Toshihiko Baba1 (1. Yokohama National University, 2. Advanced Industrial Science and Technology)

[P-33] Direct quantification of robustness in topologically trivial and non-trivial photonic edge states at telecom wavelengths

*Sonakshi Arora1, Thomas Bauer1, Rene Barcyzk2, Ewold Verhagen2, L. Kobus Kuipers1 (1. Delft University of Technology, 2. AMOLF, Amsterdam)

[P-34] Microwave Observation of a Second-Order Topological Boundary State in a Three-Dimensional Woodpile Photonic Crystal

*Shun Takahashi1, Yuya Ashida1, Huyen Thanh Phan2, Kenichi Yamashita1, Tetsuya Ueda1, Katsunori Wakabayashi2, Satoshi Iwamoto3 (1. Kyoto Institute of Technology, 2. Kwansei Gakuin University, 3. The University of Tokyo)

[P-35] Dielectric Metasurfaces for Enhanced Mid-IR Spectroscopy of Solution Phase Analytes

*Soheila Kharratian1,2, Donato Conteduca2, Barbara Procacci1, Daniel J. Shaw1, Neil T. Hunt1, Thomas F. Krauss2 (1. Department of Chemistry and York Biomedical Research Institute, University of York, York, UK, 2. School of Physics, Engineering and Technology, University of York, York, UK)

[P-36] Spontaneous Emission of PbS Quantum Dots Controlled by 2D Silicon Photonic Crystals

Timon Vreman1, Pieter van Essen1, Melissa Goodwin1, Cornelis Harteveld1, *Shun Takahashi1,2, Willem Vos1 (1. University of Twente, 2. Kyoto Institute of Technology)

[P-37] Zak Phase and the Existence of Topological States in Three-Dimensional Photonic Crystals

*Huyen Thanh Phan1, Shun Takahashi2, Satoshi Iwamoto3, Katsunori Wakabayashi1 (1. Kwansei Gakuin University, Japan, 2. Kyoto Institute of Technology, Japan, 3. The University of Tokyo, Japan)

[P-38] High-Q, Inverse-Designed, Silicon Nitride Lx-Type Photonic Crystal Cavities

*Peter Aubrey Heidt1, Masato Takiguchi1,2, Hisashi Sumikura1,2, Akihiko Shinya1,2, Masaya Notomi1,2,3 (1. NTT Basic Research Laboratories, Japan, 2. NTT Nanophotonics Center, Japan, 3. Tokyo Institute of Technology, Japan)

[P-39] Dielectric metasurfaces for high
resolution detection of lipid nanovesicles

Donato Conteduca1, Steven D Quinn1, *Thomas F Krauss1 (1. University of York)

[P-40] Scaling Theory of Wave Confinement in Classical and Quantum Periodic Systems

*Marek Kozon1,2, Ad Lagendijk1, Matthias Schlottbom2, Jaap J.W. van der Vegt2, Willem L. Vos1 (1. Complex Photonic Systems (COPS), University of Twente, 2. Mathematics of Computational Science (MACS), University of Twente)

[P-41] Discontinuous Galerkin Method to Model Light Propagation in Photonic Crystals of any size

*Marek Kozon1,2, Lars J. Corbijn van Willenswaard1,2, Matthias Schlottbom2, Willem L. Vos1, Jaap J.W. van der Vegt2 (1. Complex Photonic Systems (COPS), University of Twente, 2. Mathematics of Computational Science (MACS), University of Twente)

[P-42] Photon Confinement in 3D Photonic Band Gap Superlattices

*Marek Kozon1,2, Matthias Schlottbom2, Jaap J.W. van der Vegt2, Willem L. Vos1 (1. Complex Photonic Systems (COPS), University of Twente, 2. Mathematics of Computational Science (MACS), University of Twente)

[P-43] Towards efficient electro-optic transduction in thin-film lithium niobate

*Hana K Warner1, Jeffrey Holzgrafe1, David Barton1, C.J. Xin1, Emma Batson2, Marco Colangelo2, Di Zhu1, Amirhassan Shams-Ansari1, Graham Joe1, Neil Sinclair1,3, Karl K Berggren2, Marko Loncar1 (1. John A. Paulson School of Engineering and Applied Sciences, Harvard University, USA, 2. Research Laboratory of Electronics, Massachusetts Institute of Technology, USA, 3. 3Division of Physics, Mathematics and Astronomy, and Alliance for Quantum Technologies, California)

[P-44] High NA, Low Profile Prism Lens for Beam Collimation in Si Photonic Crystal SLG Beam Scanner

Kohei Yamamoto Yamamoto1, *Kohei Yamamoto Yamamoto1, Mikiya Kamata Kamata1, Ryo Tetsuya Tetsuya1, Toshihiko Baba Baba1 (1. Yokohama National University)

[P-45] Photonic Crystal Nanolaser Biosensor Improved by using Photo-Electrochemical Circuit

*Shoji Hachuda1, Toshihiko Baba1 (1. Yokohama National University)

[P-46] Design of a nanocavity in an AlN-diamond hybrid nanobeam structure with a photonic band gap

*Yeting Yang1,2,3, Siyuan Gao1,2,3, Satoshi Iwamoto1,2,3 (1. University of Tokyo, 2. Research Center for Advanced Science and Technology, 3. Institute of industry science)

[P-47] Tailored OAM from Gain and Absorption in Three Coupled Microcavities

*Adam Mock Mock1,2, Kenta Takata1,3, Masaya Notomi1,3,4 (1. NTT Basic Research Laboratory, 2. School of Engineering and Technology, Central Michigan University, 3. Nanophotonics Center, NTT Corporation, 4. Department of Physics, Tokyo Institute of Technology)

[P-48] Photonic molecule using highly manufacturable Tamm optical states

*Talal Aqeel Alshammari1, Ruth Oulton1, Edmund Harbord1 (1. University of Bristol)

[P-49] 64-Gbps 3.5-Vpp Si Photonic Crystal Slow Light Optical Modulators

*Keisuke Kawahara1, Mikiya Kamata1, Yosuke Hinakura1, Makoto Okano2, Guangwei Cong2, Noritsugu Yamamoto2, Koji Yamada2, Toshihiko Baba1 (1. Yokohama Nat’l Univ., 2. AIST)

[P-50] Non-Hermiticity Induced Unique Eigenstates in Periodic Plasmonic Systems

*Yuto Moritake1, Taiki Yoda2,3, Masaya Notomi1,2,3 (1. Titech, 2. NTT BRL, 3. NTT NPC)

[P-51] Theory of Photonic Crystal Polaritons in Periodically Patterned
Multilayer Waveguides

*Simone Zanotti1, Hai Son Nguyen2,3, Momchil Minkov4, Lucio Claudio Andreani1, Dario Gerace1 (1. Dipartimento di Fisica, Università di Pavia, via Bassi 6, I-27100 Pavia, Italy, 2. Univ Lyon, Ecole Centrale de Lyon, CNRS, INSA Lyon, Université Claude Bernard Lyon 1, CPE Lyon, CNRS, INL, UMR5270, Ecully 69130, France, 3. Institut Universitaire de France (IUF), F-75231 Paris, France, 4. Flexcompute Inc., 130 Trapelo Rd., Belmont, Massachusetts 02478, USA)

[P-52] Lasing, anti-lasing, and non-Hermitian skin effect

*Tetsuyuki Ochiai1 (1. National Institute for Materials Science)

[P-54] Radial Transfer Matrix Model for Nearfield Emission Optimization

*Stefan Appel1, Kai Müller1, Jonathan James Finley1 (1. Walter Schottky Institute, Technische Universität München)

[P-55] Photonic Device for Electromagnetic Wave Visualization

*Liucun Li1, Hiroyuki Arai1, Toshihiko Baba1 (1. Yokohama National University)

[P-56] Photo-Thermal Control in Si Photonic Devices

*Liucun Li1, Takemasa Tamanuki1, Toshihiko Baba1 (1. Yokohama National University)

[P-57] Polarization-independent absorption enhancement of a GaAs quantum well embedded in an air-bridge bull’s-eye cavity with metal electrodes

*Sangmin Ji1, Takeyoshi Tajiri2, Xiao-Fei Liu3, Haruki Kiyama4, Akira Oiwa3, Julian Ritzmann5, Arne Ludwig5, Andreas Dirk Wieck5, Satoshi Iwamoto1 (1. The University of Tokyo, 2. University of Electro-Communications, 3. Osaka University, 4. Kyushu University, 5. Ruhr-Universität Bochum)

[P-58] Multi-dimensional topological physics in one-dimensional photonic lattice

Duy Hoang Minh Nguyen1, Hai Chau Nguyen2, Dung Xuan Nguyen3, Chiara Devescovi1, Thibaud Louvet4, Xavier Letartre4, Dario Bercioux1,5, Pierre Viktorovitch4, *Hai Son Nguyen4,6 (1. Donostia Intl. Phys. Cent., Spain, 2. Naturwissenschaftlich-Technische Fakultät, Univ. Siegen, Germany, 3. Cent. for Theoretical Phys. of Complex Systems, Inst. for Basic Sci., Korea, 4. Univ. Lyon, ECL, INSA Lyon, CNRS, UCBL, CPE Lyon, INL, France, 5. IKERBASQUE, Basque Fdn. for Sci., Spain, 6. Inst. Univ. de France)

[P-59] Observation of topological states in Si photonics SSH structure

*Toi Nakama1, Reona Nakamura1, Armandas Balcytis5,1, Hiroyuki Ito1, Toshihiko Baba1, Tomoki Ozawa2, Yasutomo Ota3, Satoshi Iwamoto4 (1. Japan/Yokohama National University, 2. Japan/Tohoku University, 3. Japan/Keio University, 4. Japan/the University of Tokyo, 5. RMIT University/Australia)

[P-60] Flash and beam-scanning three-dimensional LiDAR system based on dually modulated photonic-crystal surface-emitting lasers

*Menaka De Zoysa1, Ryoichi Sakata1, Kenji Ishizaki1, Takuya Inoue1, Masahiro Yoshida1, John Gelleta1, Yoshiyuki Mineyama2, Tomoyuki Akahori3, Satoshi Aoyama3, Susumu Noda1 (1. Kyoto University, 2. SpaceView inc., 3. Brookman Technology Co. Ltd.)

[P-61] Development of novel photonic crystal cavities for strain tuning of color centers in diamond

*Michael Haas1, Kazuhiro Kuruma1, Graham Joe1, Daniel Assumpcao1, Katie Barajas1, Bart Machielse2, Marko Loncar1 (1. Harvard University, 2. AWS Center for Quantum Networking)

[P-62] Ambient Light Tolerance of Si Photonics FMCW LiDAR Chip with Photonic Crystal Slow Light Grating Beam Scanner

*Mikiya Kamata1, Takemasa Tamanuki1, Ryo Tetsuya1, Toshihiko Baba1 (1. Yokohama Nat'l Univ.)

[P-63] Stimulated Generation of Indistinguishable Single Photons from a Quantum Ladder System

Friedrich Sbresny1, Lukas Hanschke2, Eva Schöll2, William Rauhaus1, Bianca Scaparra1, Katarina Boos1, Eduardo Zubizarreta Casalengua3, Hubert Riedl1, Elena del Valle4, Jonathan J. Finley1, Klaus Jöns2, *Kai Müller1 (1. Technical University of Munich, 2. Paderborn University, 3. University of Wolverhampton, 4. Universidad Autónoma de Madrid)

[P-64] Remote Entanglement of Superconducting Qubits via Solid-State Spin Quantum Memories

*Hodaka Kurokawa1, Moyuki Yamamoto1, Yuhei Sekiguchi1, Hideo Kosaka1 (1. Yokohama National University)

[P-65] Calculations of Real Photonic Band Gap Crystals as Opposed to Utopian Ones

Lars J. Corbijn van Willenswaard1,2, Stef Smeets3, Nicolas Renaud3, Matthias Schlottbom2, Jaap J.W. van der Vegt2, *Willem L. Vos1 (1. Complex Photonic Systems (COPS), MESA+ Institute for Nanotechnology, University of Twente, Netherlands, 2. Mathematics of Computational Science (MACS), MESA+ Institute for Nanotechnology, University of Twente, 3. Netherlands eScience Center, Amsterdam, The Netherlands)

[P-66] Experimental observation of chiral exceptional points in graphene-loaded non-Hermitian photonic crystals

*Satoshi Suzuki1,2, Shutaro Otsuka1,2, Takahiro Uemura1,2, Taiki Yoda2,3, Yuto Moritake1, Masaaki Ono2,3, Eiichi Kuramochi2,3, Masaya Notomi1,2,3 (1. Department of Physics, Tokyo Institute of Technology, 2. NTT Basic Research Laboratories, 3. Nanophotonics Center, NTT Corporation)

[P-67] On-demand lasing-state control of PCSEL by manipulating current injection distribution under QCW operation incorporating deep learning

*Koki Izumi1, Menaka De Zoysa1, Yuichiro Nakagawa1, Naoki Gyoja1, Takuya Inoue1, Shumpei Katsuno1, Masahiro Yoshida1, Kenji Ishizaki1, Ranko Hatsuda1, Susumu Noda1 (1. Kyoto Univeristy)

[P-68] Nanofin photonic crystal cavities in thin-film lithium niobate

*David Barton1, Mengjie Yu1, Rebecca Cheng1, Dylan Renaud1, Jeffrey Holzgrafe1, Di Zhu1, Amirhassan Shams-Ansari1, Neil Sinclair1, Marko Loncar1 (1. Harvard University)

[P-69] Improvement of Coupled Three-Cavity System for Efficient and Fast On-Demand Photon Transfer

Ryota Mitsuhashi1, *Takashi Asano1, Susumu Noda1 (1. Kyoto Univ.)

[P-70] Realtime operation of Si photonic crystal slow-light waveguide FMCW LiDAR

*Takemasa Tamanuki1, Shumpei Yamazaki1, Toshihiko Baba1 (1. Yokohama National University)

[P-71] Generation of Quasi bound-state in the continuum in photonic moiré at magic configurations

Chirine Amin Saadi1, *Hai Son Nguyen1, Sébastien Cueff1, Lydie Ferrier2, Serge Mazauric3, Ségolène Callard1, Xavier Letartre1 (1. Univ Lyon, Ecole Centrale de Lyon, CNRS, INSA Lyon, Univ Claude Bernard Lyon 1, CPE Lyon, CNRS, INL, UMR5270, 69130 Ecully, France, 2. Univ Lyon, INSA Lyon, CNRS, Ecole Centrale de Lyon, Univ Claude Bernard Lyon 1, CPE Lyon, INL, UMR5270, 69621 Villeurbanne, France, 3. Univ Lyon, CPE Lyon, CNRS, INSA Lyon, Ecole Centrale de Lyon, Univ Claude Bernard Lyon 1, INL, UMR5270, 69616 Villeurbanne, France.)

[P-72] RGB color image capturing utilizing imaging spectral encoder

*Saifa Moroda1, Yasuo Ohtera1 (1. Toyama Prefectural University)

[P-73] Spatially Shaping Waves to Penetrate Deep Into the Forbidden Gap of Photonic Crystals

Manashee Adhikary1,3, Timon J. Vreman1, Marek Kozoň1,4, Cornelis A.M. Harteveld1, Ad Lagendijk1, Ravitej Uppu1,2, *Willem L. Vos1 (1. Complex Photonic Systems (COPS), MESA+ Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands, 2. Department of Physics and Astronomy, The University of Iowa, Iowa City, Iowa 52242, U.S.A. , 3. Advanced Research Center for Nanolithography (ARCNL), 1098 XG Amsterdam, The Netherlands, 4. Mathematics of Computational Science (MACS), MESA+ Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands)

[P-74] Visible to Near-Infrared Thin-Film Lithium Niobate for Scalable Quantum Networks

*Dylan Renaud1, Daniel Assumpcao1, Graham Joe1, Amir Shams-Ansari1, Di Zhu2, Yaowen Hu1, David Barton1, Neil Sinclair1,3, Marko Loncar1 (1. Harvard University, 2. Institute of Materials Research and Engineering (A*STAR), 3. California Institute of Technology)

[P-75] Highly efficient grating coupler consisting of photonic-crystal-like rectangular-lattice perforated hole array and partially-etched linear gratings

*Rikuto Taira1, Saneyuki Suyama1, Keisuke Hirotani1, Toshihiko Baba1 (1. Yokohama National University)