Passive modelocking of terahertz-frequency quantum cascade lasers
Passive modelocking of terahertz-frequency quantum cascade lasers
批准号:
2748749
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
项目摘要(最多4000个字符,含太赫兹辐射将扩大:太赫兹频率范围位于电磁频谱的微波和中红外区域之间,但由于难以制造方便的源和探测器,长期以来一直拒绝开发;太赫兹辐射的频率太高,不能由用于移动电话的电子技术产生,但太赫兹辐射的频率太低,不能通过例如CD播放器激光器利用的光学技术产生。然而,在过去的二十年里,由于创新的光源、探测器和成像系统的发展,该领域取得了显著的增长。由于这些发展,太赫兹仪器现在被应用于制药和汽车工业,以及半导体设备的高分辨率故障隔离和集成电路的3D成像。其中一个值得注意的发展是量子级联激光器,它由数千层半导体材料形成的一系列量子井组成,每一层都被控制到原子层的厚度。这些设备现在被世界各地的研究小组用作高功率太赫兹波的紧凑源。然而,科学界面临的一个挑战是开发能够产生超短(皮秒持续时间)太赫兹辐射脉冲的量子级联激光器。利用激光锁模技术在光谱的可见光和红外区产生了超短激光脉冲,这导致了一系列新的测量技术和技术,包括时间分辨测量、超高速通信以及高精度计量和光谱分析。这种工作在太赫兹范围内的激光器的发展将为计量学、相干成像和层析成像、材料分析和分子光谱学开辟新的机遇。本博士项目旨在设计和开发适用于被动锁模的新型太赫兹频率量子级联激光器。这将包括开发新的量子异质结构设计以及在超宽带上提供低色散的多段波导。
英文摘要
Project Summary (max 4000 characters incl. spaces and returns) the box will expand: The terahertz frequency range sits between the microwave and mid-infrared regions of the electromagnetic spectrum, but has long resisted exploitation owing to difficulties in fabricating convenient sources and detectors; terahertz radiation is too high in frequency to be generated by the electronic techniques used in mobile telephones, but too low in frequency to be produced by the optical techniques exploited in, for example, CD player lasers. Nevertheless, the last twenty years have witnessed a remarkable growth in the field owing to the development of innovative sources, detectors, and imaging systems. Due to these developments terahertz instrumentation is now finding application in the pharmaceutical and automotive industries, and in high-resolution fault isolation in semiconductor devices and 3D imaging of integrated circuits.One notable development has been the quantum cascade laser, which comprises of a series of quantum wells formed by thousands of layers of semiconductor material, each controlled to atomic-layer thickness. These devices are now used by research groups around the world as a compact source of high-power terahertz waves. Yet one challenge to the scientific community has been to develop quantum cascade lasers that can generate ultrashort (picosecond-duration) pulses of terahertz radiation. The generation of ultrashort laser pulses has been achieved in the visible and infrared regions of the spectrum using laser modelocking, which has led to a wide range of new measurement techniques and technologies including time-resolved measurements, ultra-high speed communications, and high-precision metrology and spectroscopy. The development of such a laser operating in the terahertz range would open up new opportunities for metrology, coherent imaging and tomography, materials analysis and molecular spectroscopy.This PhD project aims to design and develop new terahertz-frequency quantum cascade laser devices suited to passive modelocking. This will involve both the development of new quantum heterostructure designs as well as multi-section waveguides providing low dispersion over ultra-wide bandwidths.
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