Development of a Stable, User-Friendly High-Power Terahertz Source: Enhancements to the UCSB Free-Electron Lasers
Development of a Stable, User-Friendly High-Power Terahertz Source: Enhancements to the UCSB Free-Electron Lasers
批准号:
0321365
负责人:
Mark Sherwin
金额:
$42.5万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-08-15 至 2007-07-31
中文摘要
这笔赠款为圣巴巴拉的加州大学开发稳定的、用户友好的高功率太赫兹源自由电子激光器(FEL)提供支持。利用太赫兹辐射的科学学科包括天体物理学、地球科学、生物物理学、凝聚态物理学和化学。新兴的技术应用包括成像、生物和化学试剂检测、光通信、遥感和超快电子学。UCSB自由电子激光器和新装修的用户实验室作为独特的设施脱颖而出,可以实现在其他地方无法完成的测量。目前的科学活动主要集中在半导体物理领域。与半导体有关的活动包括开发新的太赫兹辐射源和探测器,研究超强光与物质之间的新型相互作用,光通信光束的太赫兹调制以及量子信息处理。此外,生物物理学的活动也在不断增加。合作吸引了来自欧洲和日本以及美国其他机构的游客。S. 新的改进将(1)使控制系统现代化,以提高所有UCSB自由电子激光器的稳定性和再现性,使其对所有操作员更加用户友好,并将可用频率范围增加一倍,达到10太赫兹;(2)稳定频率以消除脉间频率抖动,使线宽变窄,并大大减少脉冲内强度的波动,以增强自由电子激光的现有应用和新应用,如电子自旋共振和高分辨率化学光谱;(3)建立一台能准确显示自由电子激光工作频率的谱仪。UCSB自由电子激光器的改进将为太赫兹频率的科学和技术发展提供新的能力。UCSB的太赫兹科学和技术跨越了许多学科,包括半导体物理,光通信,量子信息处理和生物物理。这些改进将提高FEL和相关设施用户的生产力,这些用户包括UCSB的本科生、研究生、博士后研究人员和教师,以及来自美国其他机构的初级和高级访问者。S.国内外高中学生和教师也参与与UCSB FEL相关的研究。最近私营企业的兴趣越来越大。这些改进将在很大程度上由本科生和研究生进行,为他们提供令人兴奋的现实世界研究机会和宝贵的培训。
英文摘要
This grant provides support for developing enhancements to a stable, user-friendly high-power terahertz source, the Free-Electron Laser (FEL), at the University of California, Santa Barbara. Scientific disciplines that make use of terahertz radiation include astrophysics, earth science, biophysics, condensed matter physics, and chemistry. Emergent technological applications include imaging, biological and chemical agent detection, optical communications, remote sensing, and ultrafast electronics. The UCSB Free-Electron Lasers and newly renovated User's Lab stand out as unique facilities that enable measurements that can be done nowhere else. Current scientific activity is predominantly in the area of semiconductor physics. Activity related to semiconductors includes the development of new sources and detectors of Terahertz radiation, the study of new types of interactions between ultrastrong light and matter, Terahertz modulation of light beams for optical communications, and quantum information processing. In addition, there is a growing activity in biophysics. Collaborations bring visitors from Europe and Japan as well as other institutions in the U. S. The new enhancements will (1) modernize the control system to improve the stability and reproducibility of all the UCSB FELs to make them more user friendly for all operators, and to double the available frequency range to 10 terahertz; (2) stabilize the frequency to eliminate pulse-to-pulse frequency jitter, narrow the linewidth, and greatly reduce fluctuations in intensity within a pulse to enhance existing applications of the FELs and new applications, like electron spin resonance and high-resolution chemical spectroscopy; (3) build a FEL spectrometer to accurately display the operating frequency of the FEL's. Users will then have real-time feedback on FEL frequency.The enhancement of the UCSB FELs will provide new capabilities for the development of science and technology at Terahertz frequencies. Terahertz science and technology at UCSB cuts across many disciplines, including semiconductor physics, optical communications, quantum information processing, and biophysics. The enhancements will increase productivity of users of the FELs and associated facilities, who include undergraduates, graduate students, post-doctoral researchers, and faculty at UCSB, and junior and senior visitors from other institutions in the U. S. and abroad. High-school students and teachers also participate in research associated with the UCSB FELs. There is recently increasing interest from private industry. The enhancements will be carried out in large part by undergraduates and graduate students affording them an exciting real-world research opportunity and valuable training.
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Time-resolved conformational changes of proteins by very high frequency Gd3+ EPR
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Terahertz Electron Hole Recollisions
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财政年份:2014
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依托单位:
Robust Gd3+ -based spin labels for structural studies of membrane proteins
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MRI: Development of a Free-Electron Laser for Ultrafast Pulsed Electron Paramagnetic Resonance
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Quantum Coherence and Dynamical Instability in Quantum Wells Driven by Intense Terahertz Fields.
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资助金额:$56.0万
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财政年份:2010
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依托单位:
Education and Outreach through Optical Terahertz Science and Technology Workshop; Santa Barbara, California; March 2009
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资助金额:$1.7万
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财政年份:2009
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依托单位:
Terahertz Electro-Optics and Intersubband Micro-Plasmonics in Semiconductor Quantum Well Devices
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批准号:0703925
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资助金额:$39.0万
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财政年份:2007
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依托单位:
SGER: Collaborative Research: Terahertz Dynamics of Polymer Crystallization
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批准号:0509929
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NIRT: Semiconductor nanostructures and photonic crystal microcavities for quantum information processing at Terahertz frequencies
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Terahertz Electro-Optics in Semiconductor Nanostructures
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Development of a Tunable Picosecond Source of Far-Infrared Radiation
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Nonlinear Dynamics in Quantum Wells at Terahertz Frequencies
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国内基金
海外基金
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