Applications of superconducting bolometers in security imaging

被引:1
作者
Luukanen, A. [1 ]
Leivo, M. M. [1 ]
Rautiainen, A. [1 ]
Gronholm, M. [1 ]
Toivanen, H. . [1 ]
Gronberg, L. [1 ]
Helisto, P. [1 ]
Mayra, A. [1 ]
Aikio, M. [1 ]
Grossman, E. N. [2 ]
机构
[1] VTT Tech Res Ctr Finland, Espoo, Finland
[2] Natl Inst Stand & Technol, Boulder, CO 80301 USA
来源
26TH INTERNATIONAL CONFERENCE ON LOW TEMPERATURE PHYSICS (LT26), PTS 1-5 | 2012年 / 400卷
关键词
NOISE;
D O I
10.1088/1742-6596/400/5/052018
中图分类号
O59 [应用物理学];
学科分类号
摘要
Millimeter-wave (MMW) imaging systems are currently undergoing deployment World-wide for airport security screening applications. Security screening through MMW imaging is facilitated by the relatively good transmission of these wavelengths through common clothing materials. Given the long wavelength of operation (frequencies between 20 GHz to similar to 100 GHz, corresponding to wavelengths between 1.5 cm and 3 mm), existing systems are suited for close-range imaging only due to substantial diffraction effects associated with practical aperture diameters. The present and arising security challenges call for systems that are capable of imaging concealed threat items at stand-off ranges beyond 5 meters at near video frame rates, requiring substantial increase in operating frequency in order to achieve useful spatial resolution. The construction of such imaging systems operating at several hundred GHz has been hindered by the lack of submm-wave low-noise amplifiers. In this paper we summarize our efforts in developing a submm-wave video camera which utilizes cryogenic antenna-coupled microbolometers as detectors. Whilst superconducting detectors impose the use of a cryogenic system, we argue that the resulting back-end complexity increase is a favorable trade-off compared to complex and expensive room temperature submm-wave LNAs both in performance and system cost.
引用
收藏
页数:10
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Zheng, Hao ;
Ma, Rui ;
Wang, Xiayu ;
Li, Dong ;
Hu, Jin ;
Liu, Yang ;
Zhu, Zhangming .
IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS I-REGULAR PAPERS, 2022, 69 (12) :5050-5058
[42]   Fast binary readout front-end electronics for silicon strip detectors for low energy x-ray imaging applications [J].
Grybos, Pawel .
MEASUREMENT SCIENCE AND TECHNOLOGY, 2007, 18 (08) :2465-2471
[43]   The imaging performance of compact Lu2O3:Eu powdered phosphor screens: Monte Carlo simulation for applications in mammography [J].
Liaparinos, P. F. ;
Kandarakis, I. S. .
MEDICAL PHYSICS, 2009, 36 (06) :1985-1997
[44]   Clinical boundary conditions for propagation-based X-ray phase contrast imaging: from bio-sample models targeting to clinical applications [J].
Gobo, M. S. S. ;
Balbin, D. R. ;
Honnicke, M. G. ;
Poletti, M. E. .
JOURNAL OF X-RAY SCIENCE AND TECHNOLOGY, 2024, 32 (04) :1163-1175
[45]   Effective dynamic range measurement for a CCD in full-field industrial X-ray imaging applications - art. no. 66161L [J].
Bettuzzi, Matteo ;
Brancaccioa, Rosa ;
Morigi, Maria Pia ;
Casalia, Franco .
OPTICAL MEASUREMENT SYSTEMS FOR INDUSTRIAL INSPECTION V, PTS 1 AND 2, 2007, 6616 :L6161-L6161
[46]   Robust Tissue-Air Volume Segmentation of MR Images Based on the Statistics of Phase and Magnitude: Its Applications in the Display of Susceptibility-Weighted Imaging of the Brain [J].
Du, Yiping P. ;
Jin, Zhaoyang .
JOURNAL OF MAGNETIC RESONANCE IMAGING, 2009, 30 (04) :722-731
[47]   Theoretical and Monte Carlo optimization of a stacked three-layer flat-panel x-ray imager for applications in multi-spectral diagnostic medical imaging [J].
Maurino, Sebastian Lopez ;
Badano, Aldo ;
Cunningham, Ian A. ;
Karim, Karim S. .
MEDICAL IMAGING 2016: PHYSICS OF MEDICAL IMAGING, 2016, 9783
[48]   High-accuracy and real-time 3D positioning, tracking system for medical imaging applications based on 3D digital image correlation [J].
Xue, Yuan ;
Cheng, Teng ;
Xu, Xiaohai ;
Gao, Zeren ;
Li, Qianqian ;
Liu, Xiaojing ;
Wang, Xing ;
Song, Rui ;
Ju, Xiangyang ;
Zhang, Qingchuan .
OPTICS AND LASERS IN ENGINEERING, 2017, 88 :82-90