TY - JOUR
T1 - Red–Green–Blue Light Emission from Composition Tunable Semiconductor Micro-Tripods
AU - Song, Xiaohang
AU - Xu, Zitong
AU - Gao, Bo
AU - Li, Xuyang
AU - Lv, Qihang
AU - Zhang, Rui
AU - Wang, Bingjie
AU - Zhang, Hulin
AU - Guo, Pengfei
AU - Ho, Johnny C.
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/9/25
Y1 - 2024/9/25
N2 - Micro/nanoscale lasers that span the entire visible spectrum, especially those in red, green, and blue colors, are not only essential for a variety of optical devices but also have important applications in visible color communication, multi-color fluorescence sensing, and wavelength division multiplexing. Despite the great efforts made to achieve multi-color lasing using a variety of approaches, on-chip white light emission and even red, green, and blue multi-color lasers still suffer from considerable challenges in micro-nano structures. Here, CdSxSe1−x, CdS, and ZnS micro-tripod structures are successfully prepared using chemical vapor deposition approaches. The micro-photoluminescence (µ-PL) spectra and PL-mapping of these micro-tripods reveal various emissions at 630, 508, and 460 nm, respectively. Additionally, white-light emissions based on these composition-tunable tripods are realized through an end-coupling structure system. Moreover, room-temperature modes tunable lasers are observed clearly from three legs of these micro-tripods, with a low threshold of ≈48.39 µJ cm−2 and a high quality factor of 1227.3. The realization of micro-tripods-based lasers may provide an innovative way for highly integrated photonic circuits and communications.
AB - Micro/nanoscale lasers that span the entire visible spectrum, especially those in red, green, and blue colors, are not only essential for a variety of optical devices but also have important applications in visible color communication, multi-color fluorescence sensing, and wavelength division multiplexing. Despite the great efforts made to achieve multi-color lasing using a variety of approaches, on-chip white light emission and even red, green, and blue multi-color lasers still suffer from considerable challenges in micro-nano structures. Here, CdSxSe1−x, CdS, and ZnS micro-tripod structures are successfully prepared using chemical vapor deposition approaches. The micro-photoluminescence (µ-PL) spectra and PL-mapping of these micro-tripods reveal various emissions at 630, 508, and 460 nm, respectively. Additionally, white-light emissions based on these composition-tunable tripods are realized through an end-coupling structure system. Moreover, room-temperature modes tunable lasers are observed clearly from three legs of these micro-tripods, with a low threshold of ≈48.39 µJ cm−2 and a high quality factor of 1227.3. The realization of micro-tripods-based lasers may provide an innovative way for highly integrated photonic circuits and communications.
KW - composition tunable
KW - micro-tripods
KW - mode-tunable lasers
KW - nanophotonics
KW - red–green–blue emissions
UR - https://www.scopus.com/pages/publications/85188942934
U2 - 10.1002/adfm.202403135
DO - 10.1002/adfm.202403135
M3 - 文章
AN - SCOPUS:85188942934
SN - 1616-301X
VL - 34
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 39
M1 - 2403135
ER -