Micro-resonator Probe for THz Near-field Imaging Beyond the Diffraction Limit
Micro-resonator Probe for THz Near-field Imaging Beyond the Diffraction Limit
批准号:
EP/G033870/1
负责人:
Oleg Mitrofanov
金额:
$38.88万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2009
资助国家:
英国
项目状态:
已结题
起止时间:
2009 至 --
中文摘要
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英文摘要
Terahertz (THz) device research and studies of THz phenomena in solid state systems require detection of THz waves and signals on the scale of few microns. These measurements present a major technological problem caused by diffraction of THz waves. The diffraction limit prevents the use of the recently developed THz spectroscopic instrumentation for studies of objects smaller than approximately a wavelength. Near-field surface probing methods have shown potential solutions in overcoming the diffraction limit. However all the existing THz near-field techniques exhibit another fundamental limitation due to significant perturbations in the electric field caused by the near-field probe. The probe invasiveness and a non-uniform frequency response across the THz spectrum prevent the use of the existing near-field probes for mapping of electric field distribution in THz devices. In addition, THz near-field imaging systems with spatial resolution better than ~1/20 of a wavelength suffer from a severe reduction in sensitivity.To mitigate these problems and to allow high spatial resolution studies with THz waves we propose to develop a THz imaging and spectroscopy system with a novel near-field probe. The probe concept exploits the non-invasive nature of the electro-optic detection method and utilizes an optical micro-resonator to enhance the detection sensitivity. The proposed electro-optic micro-resonator will be integrated into a fibre-coupled near-field probe. It will allow THz wave and signal probing with a spatial resolution of ~5 microns (~1/100 of the wavelength) and it will offer full spectroscopic capabilities in the THz range (0.1-2.0 THz). The novelty of this approach is in exploiting the optical cavity resonance for electro-optic detection of THz waves by an extremely small near-field probe. The goal of this research programme is to develop and build the THz near-field probing system and apply it in device research on the sub-wavelength scale. The proposed technology will expand the spectrum of THz studies to micrometre-scale objects. It will aid in the progress of THz device research and will facilitate studies of THz phenomena in physics, materials science and other disciplines.
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DOI:
10.1364/josab.30.000127
发表时间:
2013
期刊:
Journal of The Optical Society of America B-optical Physics
影响因子:
1.9
作者:
[M. Navarro‐Cía;C. Bledt;M. Vitiello;H. Beere;D. Ritchie;J. Harrington;O. Mitrofanov]
通讯作者:
M. Navarro‐Cía;C. Bledt;M. Vitiello;H. Beere;D. Ritchie;J. Harrington;O. Mitrofanov
DOI:
10.1364/oe.20.016023
发表时间:
2012-07
期刊:
Optics express
影响因子:
3.8
作者:
[M. Natrella;O. Mitrofanov;R. Mueckstein;C. Graham;C. Renaud;A. Seeds]
通讯作者:
M. Natrella;O. Mitrofanov;R. Mueckstein;C. Graham;C. Renaud;A. Seeds
DOI:
10.1007/s10762-015-0157-5
发表时间:
2015-06-01
期刊:
JOURNAL OF INFRARED MILLIMETER AND TERAHERTZ WAVES
影响因子:
2.9
作者:
[Navarro-Cia, Miguel, Melzer, Jeffrey E., Mitrofanov, Oleg]
通讯作者:
Mitrofanov, Oleg
DOI:
10.1364/oe.19.003212
发表时间:
2011-02
期刊:
Optics express
影响因子:
3.8
作者:
[R. Mueckstein;O. Mitrofanov]
通讯作者:
R. Mueckstein;O. Mitrofanov
DOI:
10.1364/oe.18.001898
发表时间:
2010-02
期刊:
Optics express
影响因子:
3.8
作者:
[O. Mitrofanov;J. Harrington]
通讯作者:
O. Mitrofanov;J. Harrington
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