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Infra-Plas: Colloidal Quantum Dots for Short-Wave Infrared Plasmonic Lasers

Infra-Plas: Colloidal Quantum Dots for Short-Wave Infrared Plasmonic Lasers
Infra-Plas:用于短波红外等离子激光器的胶体量子点
批准号:
EP/Z000912/1
负责人:
Guy Whitworth
金额:
$24.5万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2024
资助国家:
英国
项目状态:
未结题
起止时间:
2024 至 --

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中文摘要
翻译
近红外和短波红外区(700 nm至3000 nm)的激光和光学放大器是现代技术中的关键实现光通信技术。它们跨越许多相关的技术窗口,如电信波段(1250 nm至1625 nm)、激光雷达波长(905 nm和1550 nm)、人眼安全波长(>1400 nm)以及近红外IIc(1700 nm至1880 nm)、近红外III(2080 nm至2340 nm)生物窗口和大气气体传感光谱学(~2000 nm)。然而,由于材料的不兼容性,传统的真空沉积半导体激光器和硅微电子/光子学的集成是出了名的困难,阻碍了这些技术的超大规模集成和片上量子通信/信息器件的发展。溶液处理的PbS胶体量子点(CQD)可以更好地服务于红外领域的这些应用,因为它们可以很容易地集成到硅技术中,有助于经济高效地大规模生产光子器件,并且具有可调的光电性能。然而,第一代PbS激光器存在半高宽大(~4 nm)和低Q因子的问题,限制了其应用。高Q因子空腔,例如由等离子体结构产生的空腔。因此,还需要最大限度地发挥PbS CQD激光器的潜力。该项目的目的将是在推进用于集成光子学的PbS CQD激光技术方面迈出关键的一步,并通过等离子体激元的发展来探索其作为未来光子器件的可行性。
英文摘要
Lasers and optical amplifiers in the near- and short-wave infrared regions (700 nm to 3000 nm) are are a key enabling photonictechnology in modern technologies. They span many relevant technological windows such as telecommunications bands (1250 nmto 1625 nm), LIDAR wavelengths (905 nm & 1550 nm), eye-safe wavelengths (>1400 nm), and the NIR-IIc (1700 nm to 1880 nm), NIR-III(2080 nm to 2340 nm) biological windows and atmospheric gas sensing spectroscopy (~2000 nm). However, the integration oftraditional vacuum deposited semiconductor laser diodes and silicon microelectronics/photonics is notoriously difficult due tomaterial incompatibilities, preventing the very-large scale integration of these technologies and the development of on-chipquantum communication/information devices. Solution processed PbS colloidal quantum dots (CQDs) could better serve theseapplications in the infrared as they can be readily integrated into silicon technologies, lend themselves to cost-effective large scaleproduction of photonic devices and have tunable optoelectronic properties. However, the first generation of PbS lasers suffer fromlarge FWHM (~ 4 nm) and low q-factors, limiting their application. High q-factor cavities, such as those generated from plasmonicstrucures. are therefore also required to maximize the potential of PbS CQD lasers. The aim of this project will be to make a crucialstep in advancing PbS CQD laser technology for integrated photonics and explore their viability as future photonic devices, throughthe development of plasmonic caivites.
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基于蛋白质语言模型的塑料降解酶智能挖掘平台PLAS-AIzyme的构建
  • 批准号:
    JCZRMS202602447
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2026
  • 负责人:
  • 依托单位: