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Organic Micro/Nanoscale Lasers
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2016-08-25 00:00:00 , DOI: 10.1021/acs.accounts.6b00209 Wei Zhang 1, 2 , Jiannian Yao 1, 2 , Yong Sheng Zhao 1, 2
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2016-08-25 00:00:00 , DOI: 10.1021/acs.accounts.6b00209 Wei Zhang 1, 2 , Jiannian Yao 1, 2 , Yong Sheng Zhao 1, 2
Affiliation
Micro/nanoscale lasers that can deliver intense coherent light signals at (sub)wavelength scale have recently captured broad research interest because of their potential applications ranging from on-chip information processing to high-throughput sensing. Organic molecular materials are a promising kind of ideal platform to construct high-performance microlasers, mainly because of their superiority in abundant excited-state processes with large active cross sections for high gain emissions and flexibly assembled structures for high-quality microcavities. In recent years, ever-increasing efforts have been dedicated to developing such organic microlasers toward low threshold, multicolor output, broadband tunability, and easy integration. Therefore, it is increasingly important to summarize this research field and give deep insight into the structure–property relationships of organic microlasers to accelerate the future development.
中文翻译:
有机微/纳米激光
可以在(亚)波长范围内传递强相干光信号的微/纳米激光器由于其潜在的应用范围从片上信息处理到高通量传感而受到了广泛的研究兴趣。有机分子材料是构建高性能微激光器的一种有前途的理想平台,主要是因为它们在丰富的激发态过程中具有优越的优势,该过程具有用于高增益发射的大有源截面和用于高质量微腔的灵活组装的结构。近年来,致力于开发低阈值,多色输出,宽带可调性和易于集成的此类有机微激光器。所以,
更新日期:2016-08-25
中文翻译:
有机微/纳米激光
可以在(亚)波长范围内传递强相干光信号的微/纳米激光器由于其潜在的应用范围从片上信息处理到高通量传感而受到了广泛的研究兴趣。有机分子材料是构建高性能微激光器的一种有前途的理想平台,主要是因为它们在丰富的激发态过程中具有优越的优势,该过程具有用于高增益发射的大有源截面和用于高质量微腔的灵活组装的结构。近年来,致力于开发低阈值,多色输出,宽带可调性和易于集成的此类有机微激光器。所以,