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author Prabhathan, Patinharekandy
Sreekanth, Kandammathe Valiyaveedu
Teng, Jinghua
Ko, Joo Hwan
Yoo, Young Jin
Jeong, Hyeon-Ho
Lee, Yubin
Zhang, Shoujun
Cao, Tun
Popescu, Cosmin-Constantin
Mills, Brian
Gu, Tian
Fang, Zhuoran
Chen, Rui
Tong, Hao
Wang, Yi
He, Qiang
Lu, Yitao
Liu, Zhiyuan
Yu, Han
Mandal, Avik
Cui, Yihao
Ansari, Abbas Sheikh
Bhingardive, Viraj
Kang, Myungkoo
Lai, Choon Kong
Merklein, Moritz
Müller, Maximilian J.
Song, Young Min
Tian, Zhen
Hu, Juejun
Losurdo, Maria
Majumdar, Arka
Miao, Xiangshui
Chen, Xiao
Gholipour, Behrad
Richardson, Kathleen A.
Eggleton, Benjamin J.
Sharda, Kanudha
Wuttig, Matthias
Singh, Ranjan
author_facet Prabhathan, Patinharekandy
Sreekanth, Kandammathe Valiyaveedu
Teng, Jinghua
Ko, Joo Hwan
Yoo, Young Jin
Jeong, Hyeon-Ho
Lee, Yubin
Zhang, Shoujun
Cao, Tun
Popescu, Cosmin-Constantin
Mills, Brian
Gu, Tian
Fang, Zhuoran
Chen, Rui
Tong, Hao
Wang, Yi
He, Qiang
Lu, Yitao
Liu, Zhiyuan
Yu, Han
Mandal, Avik
Cui, Yihao
Ansari, Abbas Sheikh
Bhingardive, Viraj
Kang, Myungkoo
Lai, Choon Kong
Merklein, Moritz
Müller, Maximilian J.
Song, Young Min
Tian, Zhen
Hu, Juejun
Losurdo, Maria
Majumdar, Arka
Miao, Xiangshui
Chen, Xiao
Gholipour, Behrad
Richardson, Kathleen A.
Eggleton, Benjamin J.
Sharda, Kanudha
Wuttig, Matthias
Singh, Ranjan
author_sort Prabhathan, Patinharekandy
collection PubMed
description Phase Change Materials (PCMs) have demonstrated tremendous potential as a platform for achieving diverse functionalities in active and reconfigurable micro-nanophotonic devices across the electromagnetic spectrum, ranging from terahertz to visible frequencies. This comprehensive roadmap reviews the material and device aspects of PCMs, and their diverse applications in active and reconfigurable micro-nanophotonic devices across the electromagnetic spectrum. It discusses various device configurations and optimization techniques, including deep learning-based metasurface design. The integration of PCMs with Photonic Integrated Circuits and advanced electric-driven PCMs are explored. PCMs hold great promise for multifunctional device development, including applications in non-volatile memory, optical data storage, photonics, energy harvesting, biomedical technology, neuromorphic computing, thermal management, and flexible electronics.
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spelling pubmed-105794382023-10-18 Roadmap for phase change materials in photonics and beyond Prabhathan, Patinharekandy Sreekanth, Kandammathe Valiyaveedu Teng, Jinghua Ko, Joo Hwan Yoo, Young Jin Jeong, Hyeon-Ho Lee, Yubin Zhang, Shoujun Cao, Tun Popescu, Cosmin-Constantin Mills, Brian Gu, Tian Fang, Zhuoran Chen, Rui Tong, Hao Wang, Yi He, Qiang Lu, Yitao Liu, Zhiyuan Yu, Han Mandal, Avik Cui, Yihao Ansari, Abbas Sheikh Bhingardive, Viraj Kang, Myungkoo Lai, Choon Kong Merklein, Moritz Müller, Maximilian J. Song, Young Min Tian, Zhen Hu, Juejun Losurdo, Maria Majumdar, Arka Miao, Xiangshui Chen, Xiao Gholipour, Behrad Richardson, Kathleen A. Eggleton, Benjamin J. Sharda, Kanudha Wuttig, Matthias Singh, Ranjan iScience Perspective Phase Change Materials (PCMs) have demonstrated tremendous potential as a platform for achieving diverse functionalities in active and reconfigurable micro-nanophotonic devices across the electromagnetic spectrum, ranging from terahertz to visible frequencies. This comprehensive roadmap reviews the material and device aspects of PCMs, and their diverse applications in active and reconfigurable micro-nanophotonic devices across the electromagnetic spectrum. It discusses various device configurations and optimization techniques, including deep learning-based metasurface design. The integration of PCMs with Photonic Integrated Circuits and advanced electric-driven PCMs are explored. PCMs hold great promise for multifunctional device development, including applications in non-volatile memory, optical data storage, photonics, energy harvesting, biomedical technology, neuromorphic computing, thermal management, and flexible electronics. Elsevier 2023-09-22 /pmc/articles/PMC10579438/ /pubmed/37854690 http://dx.doi.org/10.1016/j.isci.2023.107946 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Perspective
Prabhathan, Patinharekandy
Sreekanth, Kandammathe Valiyaveedu
Teng, Jinghua
Ko, Joo Hwan
Yoo, Young Jin
Jeong, Hyeon-Ho
Lee, Yubin
Zhang, Shoujun
Cao, Tun
Popescu, Cosmin-Constantin
Mills, Brian
Gu, Tian
Fang, Zhuoran
Chen, Rui
Tong, Hao
Wang, Yi
He, Qiang
Lu, Yitao
Liu, Zhiyuan
Yu, Han
Mandal, Avik
Cui, Yihao
Ansari, Abbas Sheikh
Bhingardive, Viraj
Kang, Myungkoo
Lai, Choon Kong
Merklein, Moritz
Müller, Maximilian J.
Song, Young Min
Tian, Zhen
Hu, Juejun
Losurdo, Maria
Majumdar, Arka
Miao, Xiangshui
Chen, Xiao
Gholipour, Behrad
Richardson, Kathleen A.
Eggleton, Benjamin J.
Sharda, Kanudha
Wuttig, Matthias
Singh, Ranjan
Roadmap for phase change materials in photonics and beyond
title Roadmap for phase change materials in photonics and beyond
title_full Roadmap for phase change materials in photonics and beyond
title_fullStr Roadmap for phase change materials in photonics and beyond
title_full_unstemmed Roadmap for phase change materials in photonics and beyond
title_short Roadmap for phase change materials in photonics and beyond
title_sort roadmap for phase change materials in photonics and beyond
topic Perspective
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10579438/
https://www.ncbi.nlm.nih.gov/pubmed/37854690
http://dx.doi.org/10.1016/j.isci.2023.107946
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