Principles of THz Direct Detection
暂无分享,去创建一个
[1] Takayuki Watanabe,et al. Emission and detection of terahertz radiation using two-dimensional plasmons in semiconductor nanoheterostructures for nondestructive evaluations , 2013 .
[2] Arttu Luukanen,et al. Terahertz imaging system based on antenna-coupled microbolometers , 1998, Defense, Security, and Sensing.
[3] B. Lee,et al. Quasi-optical highly sensitive Schottky-barrier detector for a wide-band FIR FEL , 2003 .
[4] M. Golay,et al. A pneumatic infra-red detector. , 1947, The Review of scientific instruments.
[5] X. H. Lu,et al. A terahertz detector operating at room temperature , 2009, Photonics and Optoelectronics Meetings.
[6] Victor N. Ovsyuk,et al. Microbolometer detector arrays for the infrared and terahertz ranges , 2009 .
[7] Dean P. Neikirk,et al. Air-bridge microbolometer for far-infrared detection , 1984 .
[8] Masashi Yoshimura,et al. Evaluation of human hairs with terahertz wave , 2013 .
[9] W. Knap,et al. InP- and GaAs-Based Plasmonic High-Electron-Mobility Transistors for Room-Temperature Ultrahigh-Sensitive Terahertz Sensing and Imaging , 2013, IEEE Sensors Journal.
[10] D. H. S. Maithripala,et al. Thermal conductivity in metallic nanostructures at high temperature: Electrons, phonons, and the Wiedemann-Franz law , 2010 .
[11] A. Moretti,et al. Detection and Mixing Properties of an InSb Metal-Semiconductor Point Contact Diode , 1999 .
[12] A. Satou,et al. Ultrahigh sensitive sub-terahertz detection by InP-based asymmetric dual-grating-gate high-electron-mobility transistors and their broadband characteristics , 2014 .
[13] H. Roskos,et al. Rational design of high-responsivity detectors of terahertz radiation based on distributed self-mixing in silicon field-effect transistors , 2009 .
[14] Erich N. Grossman,et al. Micromachined antenna-coupled uncooled microbolometers for terahertz imaging arrays , 2004, SPIE Defense + Commercial Sensing.
[15] A silicon-diode-based infrared thermal detector array , 1993 .
[16] D. Neikirk,et al. Composite microbolometers with tellurium detector elements , 1992 .
[17] P. Chevalier,et al. $D$ -Band Total Power Radiometer Performance Optimization in an SiGe HBT Technology , 2012, IEEE Transactions on Microwave Theory and Techniques.
[18] Erich N. Grossman,et al. Niobium microbolometers for far-infrared detection , 1995 .
[19] D Coquillat,et al. Nanometer size field effect transistors for terahertz detectors , 2013, Nanotechnology.
[20] Dean P. Neikirk,et al. Far-infrared microbolometer detectors , 1984 .
[21] W. Schottky. Über spontane Stromschwankungen in verschiedenen Elektrizitätsleitern , 1918 .
[22] Arthur Robert Weeks,et al. Design, fabrication, and characterization of antenna-coupled metal-oxide-metal diodes for dual-band detection , 2005 .
[23] H. Nyquist. Thermal Agitation of Electric Charge in Conductors , 1928 .
[24] Yan Zhao,et al. A 1 k-Pixel Video Camera for 0.7–1.1 Terahertz Imaging Applications in 65-nm CMOS , 2012, IEEE Journal of Solid-State Circuits.
[25] Ramon Gonzalo,et al. Measurement of the dielectric constant and loss tangent of high dielectric-constant materials at terahertz frequencies , 2003 .
[26] Jun Yang,et al. Research of an infrared pyroelectric sensor based THz detector and its application in CW THz imaging , 2009, Applied Optics and Photonics China.
[27] Bernd Heinemann,et al. A Terahertz Detector Array in a SiGe HBT Technology , 2013, IEEE Journal of Solid-State Circuits.
[28] Thomas W. Crowe,et al. Investigation of GaAs Schottky barrier diodes in the THz range , 1990 .
[29] P. S. Hall,et al. Active Integrated Antennas , 1994, 2001 31st European Microwave Conference.
[30] J. Hesler,et al. NEP and responsivity of THz zero-bias Schottky diode detectors , 2007, 2007 Joint 32nd International Conference on Infrared and Millimeter Waves and the 15th International Conference on Terahertz Electronics.
[31] Alvydas Lisauskas,et al. A 0.65 THz Focal-Plane Array in a Quarter-Micron CMOS Process Technology , 2009, IEEE Journal of Solid-State Circuits.
[32] H. Kazemi,et al. Advances in schottky rectifier performance , 2007, IEEE Microwave Magazine.
[33] V. Dobrovolsky,et al. A room temperature, or moderately cooled, fast THz semiconductor hot electron bolometer , 2007 .
[34] A wideband monolithic submillimeter-wave quasi-optical power meter , 1990, IEEE International Digest on Microwave Symposium.
[35] W. S. Boyle,et al. Performance Characteristics of a New Low-Temperature Bolometer , 1959 .
[36] H. Hübers,et al. Application of Zero-Bias Quasi-Optical Schottky-Diode Detectors for Monitoring Short-Pulse and Weak Terahertz Radiation , 2010, IEEE Electron Device Letters.
[37] M. Shur,et al. Plasmonic terahertz detector response at high intensities , 2012 .
[38] Qing Hu,et al. Micromachined room‐temperature microbolometers for millimeter‐wave detection , 1996 .
[39] Wojciech Knap,et al. SixGey:H-based micro-bolometers studied in the terahertz frequency range , 2010 .
[40] Erik K. Duerr,et al. Micromachined room-temperature microbolometer for millimeter-wave detection and focal-plane imaging arrays , 1997, Defense, Security, and Sensing.
[41] M. Shur,et al. Detection, mixing, and frequency multiplication of terahertz radiation by two-dimensional electronic fluid , 1996 .
[42] A. Luukanen,et al. Performance comparison of Nb and NbN antenna-coupled microbolometers , 2007, SPIE Defense + Commercial Sensing.
[43] Arthur C. Gossard,et al. MILLIMETER AND SUB-MILLIMETER WAVE PERFORMANCE OF AN ERAS:INALGAAS SCHOTTKY DIODE COUPLED TO A SINGLE-TURN SQUARE SPIRAL , 2007 .