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1
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4043138502
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Optoelectronic microwave switching
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also Proc. Inst. Elec. Eng., pt. J, pp. 126–132
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W. Platte, “Optoelectronic microwave switching,” in Proc. Military Microwaves Conf. (London), 1984, pp. 276-286; also Proc. Inst. Elec. Eng., pt. J, vol. 132, pp. 126–132, 1985.
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(1984)
In Proc. Military Microwaves Conf.
, vol.132
, pp. 276-286
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Platte, W.1
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2
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0016520427
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Microwave switching by picosecond photoconductivity
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A. M. Johnson and D. H. Auston, “Microwave switching by picosecond photoconductivity,” IEEE J. Quantum Electron., vol. QE-11, pp. 283–287, 1975.
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(1975)
IEEE J. Quantum Electron.
, vol.QE-11
, pp. 283-287
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Johnson, A.M.1
Auston, D.H.2
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3
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0017988728
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Spectral dependence of microwave power transmission in laser-controlled solid-state microstrip switches
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W. Platte, “Spectral dependence of microwave power transmission in laser-controlled solid-state microstrip switches.” Proc. Inst. Elec. Eng., pt. I, vol. 2, pp. 97–103, 1978.
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(1978)
Proc. Inst. Elec. Eng.
, vol.2
, pp. 97-103
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Platte, W.1
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4
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0018006820
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Optoelectronic generation of short microwave bursts via pulse subtraction
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W. Platte, “Optoelectronic generation of short microwave bursts via pulse subtraction,” Arch. Elek. Ubertragung., vol. 32, pp. 377–378, 1978.
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(1978)
Arch. Lileh. Ubertragung.
, vol.32
, pp. 377-378
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Platte, W.1
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5
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0001252350
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Generation and detection of millimeter waves by picosecond photoconductivity
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D. H. Auston and P. R. Smith, “Generation and detection of millimeter waves by picosecond photoconductivity.” Appl. Phys. Lett., vol. 43. pp. 631–633, 1983.
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(1983)
Appl. Phys. Lett.
, vol.43
, pp. 631-633
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Auston, D.H.1
Smith, P.R.2
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6
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0039310018
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Picosecond optoelectronic detection, sampling and correlation measurements in amorphous semiconductors
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D. H. Auston, A. M. Johnson. P. R. Smith, and J. C. Bean. “Picosecond optoelectronic detection, sampling and correlation measurements in amorphous semiconductors,” Appl. Phys. Lett,. vol. 37, 371–373, 1980.
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(1980)
Appl. Phys. Lett.
, vol.37
, pp. 371-373
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Auston, D.H.1
Johnson, A.M.2
Smith, P.R.3
Bean, J.C.4
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7
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0021478886
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High-speed optoelectronic sampling with semiconductor-laser pulsed coplanar photoconductor
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P. Schmid and H. Melchior, “High-speed optoelectronic sampling with semiconductor-laser pulsed coplanar photoconductor.” Electron. Lett., vol. 20, 684–685, 1984.
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(1984)
Electron. Lett.
, vol.20
, pp. 684-685
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Schmid, P.1
Melchior, H.2
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8
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0022593945
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Picosecond optoelectronic measurement of the high-frequency scattering parameters of a GaAs FET
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D. E. Cooper and S. C. Moss, “Picosecond optoelectronic measurement of the high-frequency scattering parameters of a GaAs FET,” IEEE J. Quantum Electron., vol. QE-22, pp. 94–100, 1986.
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(1986)
IEEE J. Quantum Electron.
, vol.QE-22
, pp. 94-100
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Cooper, D.E.1
Moss, S.C.2
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9
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0020191561
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Switched optoelectronic microwave load
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W. Platte, “Switched optoelectronic microwave load,” Proc. Inst. Elec. Eng., pt. I, vol. 129, pp. 193–198. 1982.
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(1982)
Proc. Inst. Elec. Eng.
, vol.129
, pp. 193-198
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Platte, W.1
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11
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0019621485
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Optoelectronic microwave switching via laser-induced plasma tapers in GaAs microstrip sections
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W. Platte, “Optoelectronic microwave switching via laser-induced plasma tapers in GaAs microstrip sections,” IEEE Trans. Microwave Theory Tech., vol. MTT-29, 1010–1018, 1981.
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(1981)
IEEE Trans. Microwave Theory Tech.
, vol.MTT-29
, pp. 1010-1018
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Platte, W.1
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12
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0014618364
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Coplanar waveguide: A surface strip transmission line suitable for nonreciprocal gyromagnetic device applications
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C. P. Wen, “Coplanar waveguide: A surface strip transmission line suitable for nonreciprocal gyromagnetic device applications,” IEEE Trans. Microwave Theory Tech., vol. MTT-17, pp. 1087–1090. 1969.
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(1969)
IEEE Trans. Microwave Theory Tech.
, vol.MTT-17
, pp. 1087-1090
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Wen, C.P.1
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15
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0001430402
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From approximations to exact relations for characteristic impedances
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W. Hilberg, “From approximations to exact relations for characteristic impedances,” IEEE Trans. Microwave Theory Tech., vol. MTT-17, pp. 259–265, 1969.
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(1969)
IEEE Trans. Microwave Theory Tech.
, vol.MTT-17
, pp. 259-265
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Hilberg, W.1
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17
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84939712686
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Internal Rep. IHFT-DA 440, Univ. of Erlangen-Nuernberg, Erlangen, West Germany
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B. Sauerer and W. Platte, Internal Rep. IHFT-DA 440, Univ. of Erlangen-Nuernberg, Erlangen, West Germany, 1987.
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(1987)
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Sauerer, B.1
Platte, W.2
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18
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84939756512
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Internal Rep. IHFT-ST 441, Univ. of Erlangen-Nuernberg Erlangen West Germany
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G. Rohmer and W. Platte. Internal Rep. IHFT-ST 441, Univ. of Erlangen-Nuernberg, Erlangen, West Germany, 1987.
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(1987)
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Rohmer, G.1
Platte, W.2
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19
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0024031705
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Effective photoconductivity and plasma depth in optically quasi-CW controlled microwave switching devices
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W. Platte, “Effective photoconductivity and plasma depth in optically quasi-CW controlled microwave switching devices,” Proc. Inst. Elec. Eng., pt. J. vol. 135. pp. 251–254, 1988.
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(1988)
Proc. Inst. Elec. Eng.
, vol.135
, pp. 251-254
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Platte, W.1
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22
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0017428740
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An optimization of semiconductor film thickness in light-controlled microstrip devices
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W. Platte, “An optimization of semiconductor film thickness in light-controlled microstrip devices.” Solid-State Electron., vol. 20, pp. 57–60, 1977.
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(1977)
Solid-State Electron.
, vol.20
, pp. 57-60
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Platte, W.1
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24
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36149015973
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Intrinsic optical absorption in single-crystal germanium and silicon at 77 K and 300 K
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W. C. Dash and R. Newman, “Intrinsic optical absorption in single-crystal germanium and silicon at 77 K and 300 K,” Phys. Rev., vol. 99, pp. 1151–1155, 1955.
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(1955)
Phys. Rev.
, vol.99
, pp. 1151-1155
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Dash, W.C.1
Newman, R.2
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25
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84939746701
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Photoinduced microwave attenuation in LED-con-trolled semiconductor coplanar waveguides
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to be published
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W. Platte, “Photoinduced microwave attenuation in LED-con-trolled semiconductor coplanar waveguides,” Arch. Elek. Ubertragung., to be published.
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Arch. Elek. Ubertragung.
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Platte, W.1
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