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International Journal of Infrared and Millimeter Waves (297)
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Siegel, P. H., & Dengler, R. J. (2007). Terahertz Heterodyne Imaging Part II: Instruments. International Journal of Infrared and Millimeter Waves, 27(5), 631–655.

Authors 2
  1. Peter H. Siegel (first)
  2. Robert J. Dengler (additional)
References 58 Referenced 34
  1. P.H. Siegel “Submillimeter-Wave Camera,” JPL New Technology Report, NTR-20718, May 14, 1999
  2. T.J. Cornwell and P.J. Napier, P.J., “The focal plane coherence function of an imaging antenna and its use in measuring and correcting aberrations,” Radio Science vol. 23, no. 5, pp. 739–48, Sept.–Oct. 1988. (10.1029/RS023i005p00739) / Radio Science by T.J. Cornwell (1988)
  3. T.J. Cornwell, M.A. Holdaway, J.M. Uson, “Radio-interferometric imaging of very large objects: implications for array design,” Astronomy and Astrophysics, vol. 271, no. 2, pp. 697–713, April 1993. / Astronomy and Astrophysics by T.J. Cornwell (1993)
  4. See several examples in: D. Emerson and T. Payne, editors, “Multi-Feed Systems for Radio Telescopes.” ASP Conference Series, v. 75, c. 1995.
  5. U.U. Graf, S. Heyminck, E.A. Michael and S. Stanko, “KOSMA’s 490/810 GHz array receiver,” 12th Int. Conf. on Space THz Tech., San Diego, CA, pp. 553–562, Feb. 14–16, 2001.
  6. C. Walker, C. Groppi, A. Hungerford, C. Kulesa, D. Golish, C. Drouet D’Aubigny, K. Jacobs, U. Graf, C. Martin and J. Kooi, “Pole Star: an 810 GHz Array receiver for Astro,” 12th Int. Conf. on Space THz Tech., San Diego, CA, pp. 540–552, Feb. 14–16, 2001.
  7. T. Klein, S.D. Philipp, R. Gusten, F. Gueth, C. Kasemann, D. Lis and T. Phillips, “CHAMP, the carbon heterodyne array of the MPIfR: retrospect and perspectives,” SPIE Millimeter and Submillimeter Detectors for Astronomy, v. 4855, 2002.
  8. S.E. Clark, J.A. Lovberg and J.A. Gallianoo, “Passive millimeter-wave imaging for contra-band detection,” SPIE Proceedings, v. 3575, pp. 322–325, Nov. 3–Nov. 5, 1998. (10.1117/12.335003) / SPIE Proceedings by S.E. Clark (1998)
  9. Lee Mirth, A. Pergande, D. Eden and L. Chu, “Passive millimeter wave camera images, current and future,” SPIE Proceedings, v. 3703, pp. 68–75, April 7, 1999. (10.1117/12.353005) / SPIE Proceedings by L. Mirth (1999)
  10. A.H. Lettington, D. Dunn, M. Attia and I. Blankson, “Passive millimeter-wave imaging architectures,” J. Opt. A: Pure Appl. Opt., v.5, pp. S103–S110, 2003. (10.1088/1464-4258/5/4/363) / J. Opt. A: Pure Appl. Opt. by A.H. Lettington (2003)
  11. R. Appleby, “Mechanically scanned real time passive millimeter wave imaging at 94 GHz,” SPIE vol. 5077, pp. 1–6, 2003. / SPIE by R. Appleby (2003)
  12. L. Yujiri, M. Shoucri, P. Moffa, “Passive millimeter wave imaging,” IEEE Microwave Magazine, vol. 4, no. 3, pp. 39–50, Sept. 2003. (10.1109/MMW.2003.1237476) / IEEE Microwave Magazine by L. Yujiri (2003)
  13. D.B. Rutledge, D.P. Neikirk and D.P. Kasilingam, “Integrated-Circuit Antennas,” Chapter 1 of Infrared and Millimeter Waves, vol. 10, Academic Press, pp. 1–90, 1983. / Infrared and Millimeter Waves by D.B. Rutledge (1983)
  14. H.R. Fetterman, T. Sollner, P.T. Parrish, C.D. Parker, R.H. Mathews, P.E. Tannenwald, “Printed Dipole Millimeter Wave Antenna For Imaging Applications,” Electromagnetics, vol. 3, pp. 209–215, 1983. (10.1080/02726348308915184) / Electromagnetics by H.R. Fetterman (1983)
  15. C.E. Zah, D. Kasilingam, J.S. Smith, D.B. Rutledge, T.C. Wang, S. Schwarz, “Millimeter Wave Monolithic Schottky Diode Imaging Arrays,” International Journal of Infrared and Millimeter Waves, vol. 6, no. 10, pp. 981–997, Oct. 1985. (10.1007/BF01010676) / International Journal of Infrared and Millimeter Waves by C.E. Zah (1985)
  16. G.M. Rebeiz, D.P. Kasilingam, Y. Guo, P. A. Stimson, D. B. Rutledge, “Monolithic Millimeter-Wave Two-Dimensional Horn Imaging Arrays,” IEEE Transactions on Antennas and Propagation, vol. 38 no. 9, pp. 1473–1482, Sept. 1990. (10.1109/8.57001) / IEEE Transactions on Antennas and Propagation by G.M. Rebeiz (1990)
  17. S. Gearhart, C.C. Ling, G.M. Rebeiz, H. Davee, G. Chin, “Integrated 119-um Linear Corner-Cube Array,” IEEE Microwave and Guided Wave Letters, vol. 1, no. 7, pp. 155–157, July 1991. (10.1109/75.84567) / IEEE Microwave and Guided Wave Letters by S. Gearhart (1991)
  18. W.Y. Ali-Ahmad, G.M. Rebeiz, H. Dave, G. Chin, “802 GHz Integrated Horn Antennas Imaging Array,” Int. Journal of Infrared & Millimeter Waves, vol. 12, pp. 481–486, May 1991. (10.1007/BF01010881) / Int. Journal of Infrared & Millimeter Waves by W.Y. Ali-Ahmad (1991)
  19. P.A. Stimson, R.J. Dengler, P.H. Siegel and H.G. LeDuc, “A Planar Quasi-Optical SIS Receiver Suitable for Array Applications,” 1992 IEEE MTT-S International Microwave Symposium, Paper MM-4, pp. 1421–24, June 4, 1992. (10.1109/MWSYM.1992.188275)
  20. C.M. Mann, P. de Maagt, G. McBride, F. van de Water, D. Castiglione, A. McCalden, L. Deias, J. O’Neill, A. Laisne, J.T. Vallinas, I. Ederra, D. Haskett, D. Jenkins, A. Zinn, M. Ferlet and R. Edeson, “Microfabrication of 3D terahertz circuitry,” 2003 MTT-S Int. Microwave Sym. Digest, pp. 739–742, June 2003. (10.1109/MWSYM.2003.1212477)
  21. D. T. Petkie, F. C. De Lucia, C. Casto, P. Helminger, E. L. Jacobs, S. K. Moyer, S. Murrill, C. Halford, S. Griffin, and C. Franck, “Active and passive millimeter and sub-millimeter-wave imaging,” Proc. SPIE, vol. 5989, pp. 598918-1 to 598918-8, 2005. / Proc. SPIE by D. T. Petkie (2005)
  22. C.M. Mann, “A compact real time passive terahertz imager,” SPIE Defense and Security Symposium: Passive Millimeter-Wave Imaging Technology IX, session 4, Orlando, FL, paper 6211-14, April 17–21, 2006. (10.1117/12.669850)
  23. W.J. Wilson, R.J. Howard, A. Ibbott, G.S. Parks and W.B. Ricketts, “Millimeter-Wave Imaging Sensor,” Trans. on Microwave Theory and Techniques v. 34, no. 10, pp. 1026–1035, Oct. 1986. (10.1109/TMTT.1986.1133492) / Trans. on Microwave Theory and Techniques by W.J. Wilson (1986)
  24. J. W. Waters et.al, “The UARS and EOS Microwave Limb Sounder (MLS) Experiments,” Journal of the Atmospheric Sciences, vol. 56, no. 2, pp. 194–218, Feb. 1999. (10.1175/1520-0469(1999)056<0194:TUAEML>2.0.CO;2) / Journal of the Atmospheric Sciences by J. W. Waters (1999)
  25. Michael C. Gaidis, H.M. Pickett, C.D. Smith, R.P. Smith, S.C. Martin and P.H. Siegel “A 2.5 THz Receiver Front-End for Spaceborne Applications,” IEEE Trans. on Microwave Theory and Techniques, vol. 48, no. 4, pp. 733–739, April 2000. (10.1109/22.841966) / IEEE Trans. on Microwave Theory and Techniques by M. C. Gaidis (2000)
  26. E.R. Mueller, W.E. Robotham, Jr., R.P. Meisner, R.A. Hart, J. Kennedy and L.A. Newman, “2.5 THz laser local oscillator for the EOS Chem I satellite,” Proc. 9th. Int. Conf. on Space THz Tech, p.563, Pasadena, CA, March 1998.
  27. The SIFIR-50 is currently available from Coherent Inc., 5100 Patrick Henry Drive, Santa Clara, CA 95054 USA.
  28. P.H. Siegel and R.J. Dengler, “Terahertz Heterodyne Imager for Biomedical Applications,” SPIE Conf. on THz and GHz Electronics and Photonics III, vol. 5354, pp. 1–9, San Jose, CA, Jan 25–26, 2004. / SPIE Conf. on THz and GHz Electronics and Photonics III by P.H. Siegel (2004)
  29. P.H. Siegel and R.J. Dengler, “Applications & Early Results from THz Heterodyne Imaging at 119μm,” Joint 29th Int. Conf. on Infrared and Millimeter Waves, Karlsruhe, Germany, paper 164, Sept. 27–Oct. 1, 2004.
  30. A.J. Gatesman, R.H. Giles, and J. Waldman, “A High Precision Reflectometer for the Study of Optical Properties of Materials in the Submillimeter”, Proc. of the 17th Int. Conf. on Infrared and Millimeter Waves, Los Angeles, CA, Dec. 1992.
  31. P.H. Siegel, R.P. Smith, S. Martin and M. Gaidis, “2.5 THz GaAs Monolithic Membrane-Diode Mixer”, IEEE Transactions Microwave Theory and Techniques, vol. 47, no. 5, pp. 596–604, May 1999. (10.1109/22.763161) / IEEE Transactions Microwave Theory and Techniques by P.H. Siegel (1999)
  32. H.M. Pickett, J.C. Hardy and J. Farhoomand, “Characterization of a Dual Mode Horn for Submillimeter Wavelengths,” IEEE Trans. Microwave Theory and Techniques, vol. MTT-32, no. 8, pp. 936–8, Aug. 1984. (10.1109/TMTT.1984.1132801) / IEEE Trans. Microwave Theory and Techniques by H.M. Pickett (1984)
  33. J. L. Doane, “Broadband superheterodyne tracking circuits for millimeter wave measurements,” Rev. Sci. Instr., vol. 51, no. 3, pp. 317–20, March 1980. (10.1063/1.1136209) / Rev. Sci. Instr. by J. L. Doane (1980)
  34. N.G. Douglas, Millimetre and Submillimetre Wavelength Lasers, A Handbook of CW Measurements, Springer Verlag Series in Optical Sciences v. 61, Berlin, 1989, especially pages 28–32. (10.1007/978-3-540-46095-4_4)
  35. W.R. McGrath, B.S. Karasik, A. Skalare, B. Bumble and H.G. LeDuc, “Hot electron superconductive mixers for THz frequencies,” SPIE Terahertz Spectroscopy and Applications conference, vol. 3617, pp. 80–88, Jan. 1999. (10.1117/12.347111) / SPIE Terahertz Spectroscopy and Applications conference by W.R. McGrath (1999)
  36. A. Karpov, D. Miller, F. Rice, J. Zmuidzinas, J. Stern, B. Bumble and H.G. LeDuc, “Low noise 1.2 THz SIS receiver,” 8th Int. Superconducting Electronics Conference, Osaka, Japan, pp. 521–522, June 19–22, 2001.
  37. R. Kohler, A. Tredicucci, F. Beltram, H. Beere, E. Linfield, A. Giles Davies, D. Ritchie, A. Lotti and F. Rossi, “Terahertz semiconductorheterostructure laser,” Nature, vol. 417, pp. 156–9, May 9, 2002. (10.1038/417156a) / Nature by R. Kohler (2002)
  38. J.R. Gao, J.N. Hovenier, Z.Q. Yang, “Terahertz heterodyne receiver based on a quantum cascade laser and a superconducting bolometer,” Applied Physics Letters, vol. 86, no. 24, pp. 244104-1 to 3, 13 June 2005. / Applied Physics Letters by J.R. Gao (2005)
  39. R. A. Witte, Spectrum and Network Measurements, First Noble Publishing, pp. 236–283, 2001. (10.1049/SBTE005E)
  40. A. Barkan, F. K. Tittel, D. M. Mittleman, R. Dengler, P. H. Siegel, G. Scalari, L. Ajili, J. Faist, H. E. Beere, E. H. Linfield, A. G. Davies, D. A. Ritchie, “Linewidth and tuning characteristics of terahertz quantum cascade lasers,” Optics Letters, v. 29, no. 6, pp. 575–577, March 2004. (10.1364/OL.29.000575) / Optics Letters by A. Barkan (2004)
  41. Imran Mehdi, P.H. Siegel, D. A. Humphrey, T. H. Lee, R. J. Dengler, J. E. Oswald, A. Pease, R. Lin, H. Eisele, R. Zimmermann and N. Erickson, “An All Solid-State 640 GHz Subharmonic Mixer,” IEEE MTT-S Int. Microwave Symposium, Baltimore, MD, pp. 403–406, June 1998. (10.1109/MWSYM.1998.705019)
  42. P.H. Siegel and I. Mehdi, “The Spare-Diode-Detector: A New Planar-Diode Detector Circuit with State-of-the-Art Performance for Millimeter and Submillimeter Wavelengths,” JPL New Technology Report, NPO-20104, Dec. 27, 1996.
  43. L. Samoska, T. Gaier, A. Peralta, S. Weinreb, J. Bruston, I. Mehdi, Y.C. Chen, H.H. Liao, M. Nishimoto, R. Lai, H. Wang, Y.C. Leong, “MMIC Power Amplifiers as Local Oscillator Drivers for FIRST,” Proc. SPIE, vol. 4013, pp. 275–284, 2000. (10.1117/12.393983) / Proc. SPIE by L. Samoska (2000)
  44. H. Wang, L. Samoska, T. Gaier, A. Peralta, H.-H. Liao, Y.C. Leong, S. Weinreb, Y.C. Chen, M. Nishimoto, R. Lai, “Power-Amplifier Modules Covering 70-113 GHz Using MMICs,” IEEE Trans. Microwave Theory and Tech., vol. 49, pp. 9–16, 2001. (10.1109/22.899956) / IEEE Trans. Microwave Theory and Tech. by H. Wang (2001)
  45. N. Wyborn, “The HIFI Heterodyne Instrument for FIRST: Capabilities and Performance,” ESA Symposium: The Far InfraRed and Submillimetre Universe, Grenoble, France, pp. 19–24, 15–17 April 1997.
  46. A. Maestrini, J. Ward, J. Gill, H. Javadi, E. Schlecht, C. Tripon-Canseliet, G. Chattopadhyay, I. Mehdi, “A 540-640-GHz High-Efficiency Four-Anode Frequency Tripler,” IEEE Trans. Microwave Theory and Tech., vol. 53, pp. 2835–2843, 2005. (10.1109/TMTT.2005.854174) / IEEE Trans. Microwave Theory and Tech. by A. Maestrini (2005)
  47. Imran Mehdi, P.H. Siegel, D. A. Humphrey, T. H. Lee, R. J. Dengler, J. E. Oswald, A. Pease, R. Lin, H. Eisele, R. Zimmermann and N. Erickson, “An All Solid-State 640 GHz Subharmonic Mixer,” IEEE MTT-S Int. Microwave Symposium, Baltimore, MD, pp. 403–406, June 1998. (10.1109/MWSYM.1998.705019)
  48. P.H. Siegel and I. Mehdi, “The Spare-Diode-Detector: A New Planar-Diode Detector Circuit with State-of-the-Art Performance for Millimeter and Submillimeter Wavelengths,” JPL New Technology Report, NPO-20104, Dec. 27, 1996.
  49. L. Samoska, T. Gaier, A. Peralta, S. Weinreb, J. Bruston, I. Mehdi, Y.C. Chen, H.H. Liao, M. Nishimoto, R. Lai, H. Wang, Y.C. Leong, “MMIC Power Amplifiers as Local Oscillator Drivers for FIRST,” Proc. SPIE, vol. 4013, pp. 275–284, 2000. (10.1117/12.393983) / Proc. SPIE by L. Samoska (2000)
  50. H. Wang, L. Samoska, T. Gaier, A. Peralta, H.-H. Liao, Y.C. Leong, S. Weinreb, Y.C. Chen, M. Nishimoto, R. Lai, “Power-Amplifier Modules Covering 70-113 GHz Using MMICs,” IEEE Trans. Microwave Theory and Tech., vol. 49, pp. 9–16, 2001. (10.1109/22.899956) / IEEE Trans. Microwave Theory and Tech by H. Wang (2001)
  51. N. Wyborn, “The HIFI Heterodyne Instrument for FIRST: Capabilities and Performance,” ESA Symposium: The Far InfraRed and Submillimetre Universe, Grenoble, France, pp. 19–24, 15–17 April 1997.
  52. A. Maestrini, J. Ward, J. Gill, H. Javadi, E. Schlecht, C. Tripon-Canseliet, G. Chattopadhyay, I. Mehdi, “A 540-640-GHz High-Efficiency Four-Anode Frequency Tripler,” IEEE Trans. Microwave Theory and Tech., vol. 53, pp. 2835–2843, 2005. (10.1109/TMTT.2005.854174) / IEEE Trans. Microwave Theory and Tech. by A. Maestrini (2005)
  53. J. R. Birch, J. D. Dromey, J. Lesurf, “The Optical Constants of Some Common Low Loss Polymers Between 4 and 40 cm−1,” National Physical Laboratory Report DES 69, February 1981. (10.1016/0020-0891(81)90053-1)
  54. J. A. Lovberg, J. A. Galliano, Jr., R. Olsen, “Passive millimeter-wave imaging using a sparse phased-array antenna,” Aerosence Conference: Passive Millimeter Wave Technology, SPIE Proceedings v. 3064, paper 3064-07, 21–22 April 1997.
  55. B. Agarwal, A.E. Schmitz, J.J. Brown, M. Matloubian, M.G. Case, M. Le, M. Lui and M.J.W. Rodwell, “112-GHz, 157-GHz, and 180-GHz InP HEMT traveling-wave amplifiers,” IEEE Trans. on Microwave Theory and Techniques, vol. 46, no. 12, pt. 2, pp. 2553–9, Dec. 1998. (10.1109/22.739247) / IEEE Trans. on Microwave Theory and Techniques by B. Agarwal (1998)
  56. See for example Passive Milimeter Wave sessions at past SPIE Aero-Sense Conferences beginning in 1997 with v. 3064, “Passive Millimeter-Wave Imaging Technology” and then starting in 2004, the annual “SPIE Defense and Security Symposium.”
  57. R.J. Dengler, A. Skalare and P.H. Siegel, “Passive and active imaging of humans for contra-band detection at 640 GHz,” IEEE 2004 IMS Symposium, Forth Worth, TX, June 7–11, 2004.
  58. P.R. Coward and R. Appleby, “Development of an illumination chamber for indoor millimeter-wave imaging,” Proc. SPIE Passive Millimeter-Wave Imaging Technology VI, Orlando, FL, v. 5077, pp. 54–61, 2003. / Proc. SPIE Passive Millimeter-Wave Imaging Technology VI, Orlando, FL by P.R. Coward (2003)
Dates
Type When
Created 18 years, 6 months ago (Feb. 2, 2007, 2:59 p.m.)
Deposited 7 months, 2 weeks ago (Jan. 13, 2025, 2:39 a.m.)
Indexed 7 months, 2 weeks ago (Jan. 14, 2025, 12:06 a.m.)
Issued 18 years, 6 months ago (Jan. 31, 2007)
Published 18 years, 6 months ago (Jan. 31, 2007)
Published Online 18 years, 6 months ago (Jan. 31, 2007)
Published Print 18 years, 6 months ago (Feb. 22, 2007)
Funders 0

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@article{Siegel_2007, title={Terahertz Heterodyne Imaging Part II: Instruments}, volume={27}, ISSN={1572-9559}, url={http://dx.doi.org/10.1007/s10762-006-9109-4}, DOI={10.1007/s10762-006-9109-4}, number={5}, journal={International Journal of Infrared and Millimeter Waves}, publisher={Springer Science and Business Media LLC}, author={Siegel, Peter H. and Dengler, Robert J.}, year={2007}, month=jan, pages={631–655} }