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1999

Journal Article

Microstrip antenna-coupled infrared detector

Codreanu, I., Fumeaux, C., Spencer, D. F. and Boreman, G. D. (1999). Microstrip antenna-coupled infrared detector. Electronics Letters, 35 (25), 2166-2167. doi: 10.1049/el:19991486

Microstrip antenna-coupled infrared detector

1999

Journal Article

Lithographic antennas at visible frequencies

Fumeaux, Christophe, Alda, Javier and Boreman, Glenn D. (1999). Lithographic antennas at visible frequencies. Optics Letters, 24 (22), 1629-1631. doi: 10.1364/ol.24.001629

Lithographic antennas at visible frequencies

1999

Journal Article

Deconvolution method for two-dimensional spatial-response mapping of lithographic infrared antennas

Alda, Javier, Fumeaux, Christophe, Codreanu, Iulian, Schaefer, Jason A. and Boreman, Glenn D. (1999). Deconvolution method for two-dimensional spatial-response mapping of lithographic infrared antennas. Applied Optics, 38 (19), 3993-4000. doi: 10.1364/ao.38.003993

Deconvolution method for two-dimensional spatial-response mapping of lithographic infrared antennas

1999

Journal Article

Spatial impulse response of lithographic infrared antennas

Fumeaux, Christophe, Boreman, Glenn D., Herrmann, Werner, Kneubühl, Fritz Kurt and Rothuizen, Hugo (1999). Spatial impulse response of lithographic infrared antennas. Applied Optics, 38 (1), 37-46. doi: 10.1364/ao.38.000037

Spatial impulse response of lithographic infrared antennas

1998

Journal Article

Tunable polarization response of a planar asymmetric-spiral infrared antenna

Boreman, G. D., Fumeaux, C., Herrmann, W., Kneubühl, F. K. and Rothuizen, H. (1998). Tunable polarization response of a planar asymmetric-spiral infrared antenna. Optics Letters, 23 (24), 1912-1914. doi: 10.1364/OL.23.001912

Tunable polarization response of a planar asymmetric-spiral infrared antenna

1998

Conference Publication

Mixing of 28-THz CO2-laser radiation by nanometer thin film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

Fumeaux, C., Kneubühl, Fritz K., Herrmann, W., Rothuizen, Hugo, Lipphardt, Burghard and Weiss, Carl O. (1998). Mixing of 28-THz CO2-laser radiation by nanometer thin film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz. doi: 10.1117/12.317583

Mixing of 28-THz CO2-laser radiation by nanometer thin film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

1998

Journal Article

Nanometer thin-film Ni–NiO–Ni diodes for detection and mixing of 30 THz radiation

Fumeaux, C., Herrmann, W., Kneubühl, F.K. and Rothuizen, H. (1998). Nanometer thin-film Ni–NiO–Ni diodes for detection and mixing of 30 THz radiation. Infrared Physics & Technology, 39 (3), 123-183. doi: 10.1016/s1350-4495(98)00004-8

Nanometer thin-film Ni–NiO–Ni diodes for detection and mixing of 30 THz radiation

1998

Journal Article

Nanometer thin-film Ni-NiO-Ni diodes for mixing 28 THz CO 2 -laser emissions with difference frequencies up to 176 GHz

Fumeaux, C., Herrmann, W., Kneubühl, F.K., Rothuizen, H., Lipphardt, B. and Weiss, C.O. (1998). Nanometer thin-film Ni-NiO-Ni diodes for mixing 28 THz CO 2 -laser emissions with difference frequencies up to 176 GHz. Applied Physics B: Lasers and Optics, 66 (3), 327-332. doi: 10.1007/s003400050396

Nanometer thin-film Ni-NiO-Ni diodes for mixing 28 THz CO 2 -laser emissions with difference frequencies up to 176 GHz

1998

Conference Publication

Mixing of 28 THz CO/sub 2/-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

Fumeaux, C., Herrmann, W., Kneubuhl, K., Rothuizen, H., Lipphardt, B. and Weiss, C.O. (1998). Mixing of 28 THz CO/sub 2/-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz. Third International Kharkov Symposium 'Physics and Engineering of Millimeter and Submillimeter Waves'. MSMW'98, Kharkov, Ukraine, 17 September 1998. Piscataway, NJ United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/msmw.1998.758930

Mixing of 28 THz CO/sub 2/-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

1997

Journal Article

Polarization response of asymmetric-spiral infrared antennas

Fumeaux, C., Boreman, G. D., Herrmann, W., Rothuizen, H. and Kneubühl, F. K. (1997). Polarization response of asymmetric-spiral infrared antennas. Applied Optics, 36 (25), 6485-6490. doi: 10.1364/ao.36.006485

Polarization response of asymmetric-spiral infrared antennas

1997

Journal Article

Mixing of 28 THz (10.7 μm) CO2-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

Fumeaux, C., Herrmann, W., Kneubühl, F. K., Rothuizen, H., Lipphardt, B. and Weiss, C. O. (1997). Mixing of 28 THz (10.7 μm) CO2-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz. Infrared Physics and Technology, 38 (7), 393-396. doi: 10.1016/S1350-4495(97)00039-X

Mixing of 28 THz (10.7 μm) CO2-laser radiation by nanometer thin-film Ni-NiO-Ni diodes with difference frequencies up to 176 GHz

1996

Journal Article

Mixing of 30 THz laser radiation with nanometer thin-film Ni-NiO-Ni diodes and integrated bow-tie antennas

Fumeaux, C., Herrmann, W., Rothuizen, H., De Natale, P. and Kneubühl, F. K. (1996). Mixing of 30 THz laser radiation with nanometer thin-film Ni-NiO-Ni diodes and integrated bow-tie antennas. Applied Physics B: Lasers and Optics, 63 (2), 135-140. doi: 10.1007/BF01095263

Mixing of 30 THz laser radiation with nanometer thin-film Ni-NiO-Ni diodes and integrated bow-tie antennas

1996

Conference Publication

Mixing and Detection of10/spl mu/m Infrared Laser Radiation By The First Nnometer Thin-Film Ni-NiO-Ni Diodes with Intergrated Antennas

Fumeaux, C. and Herrmann, W. (1996). Mixing and Detection of10/spl mu/m Infrared Laser Radiation By The First Nnometer Thin-Film Ni-NiO-Ni Diodes with Intergrated Antennas. European Meeting on Lasers and Electro-Optics CLEOE-96, Hamburg, Germany, 8-13 September 1996. Piscataway, NJ United States: Institute of Electrical and Electronics Engineers. doi: 10.1109/cleoe.1996.562360

Mixing and Detection of10/spl mu/m Infrared Laser Radiation By The First Nnometer Thin-Film Ni-NiO-Ni Diodes with Intergrated Antennas