关注
Robert E Tench
Robert E Tench
Cybel LLC
在 cybel-llc.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Polarisation-independent phase conjugation of lightwave signals
RM Jopson, RE Tench
Electronics Letters 29 (25), 2216-2217, 1993
1841993
Measurement of carrier-density mediated intermodulation distortion in an optical amplifier
RM Jopson, TE Darcie, KT Gayliard, RT Ku, RE Tench, TC Rice, ...
Electronics letters 23 (25), 1394-1395, 1987
701987
Performance evaluation of waveguide phase modulators for coherent systems at 1.3 and 1.5 µm
R Tench, JM Delavaux, L Tzeng, R Smith, L Buhl, R Alferness
Journal of lightwave technology 5 (4), 492-501, 1987
631987
Electroabsorption modulator with tunable chirp
JM Freund, TGB Mason, JP Reynolds, RE Tench, FS Walters
US Patent 6,778,309, 2004
492004
Field experiment of 10 Gbit/s, 360 km transmission through embedded standard (non-DSF) fibre cables
CD Chen, JMP Delavaux, BW Hakki, O Mizuhara, TV Nguyen, RJ Nuyts, ...
Electronics Letters 30 (14), 1159-1160, 1994
401994
2-m Narrow Linewidth All-Fiber DFB Fiber Bragg Grating Lasers for Ho- and Tm-Doped Fiber-Amplifier Applications
W Walasik, D Traoré, A Amavigan, RE Tench, JM Delavaux, E Pinsard
Journal of Lightwave Technology 39 (15), 5096-5102, 2021
352021
Hybrid Er-doped fibre amplifiers at 980–1480 nm for long distance optical communications
JMP Delavaux, CF Flores, RE Tench, TC Pleiss, TW Cline, DJ DiGiovanni, ...
Electronics Letters 28 (17), 1642-1643, 1992
351992
1420-km transmission of sixteen 2.5-Gb/s channels using silica-fiber-based EDFA repeaters
AR Chraplyvy, JM Delavaux, RM Derosier, GA Ferguson, DA Fishman, ...
IEEE photonics technology letters 6 (11), 1371-1373, 1994
341994
A high capacity noncoherent FSK lightwave field experiment using Er(3+)-doped fiber optical amplifiers
D Fishman, JA Nagel, TW Cline, RE Tench, TC Pleiss, T Miller, DG Coult, ...
IEEE photonics technology letters 2 (9), 662-664, 1990
341990
Multiwavelength propagation in lightwave systems with strongly inverted fiber amplifiers
EL Goldstein, L Eskildsen, C Lin, RE Tench
IEEE photonics technology letters 6 (2), 266-269, 1994
311994
Polarization insensitive optical communication device utilizing optical preamplification
M Dixon, NA Olsson, RE Tench, L Tzeng
US Patent 4,900,917, 1990
301990
8 Gbit/s, 1.3 μm receiver using optical preamplifier
RM Jopson, AH Gnauck, BL Kasper, RE Tench, NA Olsson, CA Burrus, ...
Electronics Letters 25 (3), 233-235, 1989
261989
A field demonstration of 20-Gb/s capacity transmission over 360 km of installed standard (non-DSF) fiber
YK Park, PD Yeates, JMP Delavaux, O Mizuhara, TV Nguyen, LD Tzeng, ...
IEEE photonics technology letters 7 (7), 816-818, 1995
251995
3.2 Tbit/s (40/spl times/80 Gb/s) transmission over 1000 km with 100 km span (25 dB loss) and 0.8 bit/s/Hz of spectral efficiency
GC Gupta, RE Tench, O Mizuhara, LL Wang, NN Dang, N Chand, ...
Optical Fiber Communication Conference and Exhibit, 6-8, 2002
24*2002
Two-stage performance of polarization-maintaining Holmium-doped fiber amplifiers
RE Tench, C Romano, GM Williams, JM Delavaux, T Robin, B Cadier, ...
Journal of Lightwave Technology 37 (4), 1434-1439, 2019
232019
In-depth studies of the spectral bandwidth of a 25 W 2 μm band PM hybrid Ho-and Tm-doped fiber amplifier
RE Tench, C Romano, JM Delavaux, R Lenox, D Byrne, K Carney
Journal of Lightwave Technology 38 (8), 2456-2463, 2019
222019
A Field Demonstration of 10 Gb/s-360km Transmission Through Embedded Standard (non-DSF) Fiber Cables
CD Chen, JMP Delavaux, BW Hakki, O Mizuhara, TV Nguyen, RJ Nuyts, ...
Optical Fiber Communication Conference, PD27, 1994
221994
Simulation of 2µm single clad thulium-doped silica fiber amplifiers by characterization of the 3F43H6 transition
C Romano, RE Tench, JM Delavaux
Optics Express 26 (20), 26080-26092, 2018
212018
1.3 mu m semiconductor laser power amplifier
NA Olsson, T Cella, LD Tzeng, RE Tench
IEEE Photonics Technology Letters 1 (1), 2-3, 1989
211989
Novel highly efficient in-band pump wavelengths for medium slope efficiency holmium-doped fiber amplifiers
RE Tench, W Walasik, JM Delavaux
Journal of Lightwave Technology 39 (11), 3546-3552, 2021
202021
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