JPhys Photonics研究路线图|硫系光子学研究路线图

30 5月 2023 gabriels
Alloys of sulfur, selenium and tellurium, often referred to as chalcogenide semiconductors, offer a highly versatile, compositionally-controllable material platform for a variety of passive and active photonic applications. They are optically nonlinear, photoconductive materials with wide transmission windows that present various high- and low-index dielectric, low-epsilon and plasmonic properties across ultra-violet, visible and infrared frequencies, in addition to an, non-volatile, electrically/optically induced switching capability between phase states with markedly different electromagnetic properties. This roadmap collection presents an in-depth account of the critical role that chalcogenide semiconductors play within various traditional and emerging photonic technology platforms. The potential of this field going forward is demonstrated by presenting context and outlook on selected socio-economically important research streams utilizing chalcogenide semiconductors. To this end, this roadmap encompasses selected topics that range from systematic design of material properties and switching kinetics to device-level nanostructuring and integration within various photonic system architectures.


文章介绍

Roadmap on chalcogenide photonics

Behrad Gholipour, Stephen R Elliott, Maximilian J Müller, Matthias Wuttig, Daniel W Hewak, Brian E Hayden, Yifei Li, Seong Soon Jo, Rafael Jaramillo, Robert E Simpson, Junji Tominaga, Yihao Cui, Avik Mandal, Benjamin J Eggleton, Martin Rochette, Mohsen Rezaei, Imtiaz Alamgir, Hosne Mobarok Shamim, Robi Kormokar, Arslan Anjum, Gebrehiwot Tesfay Zeweldi, Tushar Sanjay Karnik, Juejun Hu, Safa O Kasap, George Belev and Alla Reznik

通讯作者:

  • Behrad Gholipour,加拿大阿尔伯塔大学

期刊介绍

JPhys Photonics

  • 2021年Citescore: 3.7
  • JPhys Photonics(JPPHOTON)是一本新出版的开放获取期刊,面向物理学中应用于光子学各个领域的高质量研究。期刊包含光子学研究中最重要和最激动人心的进展,着重关注跨学科和多学科的研究。涵盖领域包括:生物光子学和生物医学光学;能源和绿色技术应用,包括光伏;成像、检测和传感;光物质相互作用;光源,包括激光器和LED;纳米光子学;非线性和超快光学;光通信和光纤;光数据存储;光电子学、集成光学和半导体光子学;光子材料、超材料和工程结构;等离子体技术;传播,相互作用和行为;量子光子学和光学等。