Roadmap for phase change materials in photonics and beyond

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...

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Veröffentlicht in:iScience 2023-10, Vol.26 (10), p.107946-107946, Article 107946
Hauptverfasser: 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., Wuttig, Matthias, Singh, Ranjan
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Sprache:eng
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Zusammenfassung: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. Physics; Applied physics; Materials application
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2023.107946