T E Sale
T E Sale
University of Surrey, University of Sheffield, Avago technologies, Broadcom
Verified email at ieee.org
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Vertical cavity surface emitting lasers
TE Sale
Research Studies Press, 1995
Photomodulated reflectance study of microcavity vertical-cavity surface emitting laser structures in the weak-coupling regime: The cavity …
PJ Klar, G Rowland, PJS Thomas, A Onischenko, TE Sale, TJC Hosea, ...
Physical Review B 59 (4), 2894, 1999
Reflectance and photomodulated reflectance studies of cavity mode and excitonic transitions in an InGaAs/GaAs/AlAs/AlGaAs VCSEL structure
PJ Klar, G Rowland, TE Sale, TJC Hosea, R Grey
physica status solidi (a) 170 (1), 145-158, 1998
Cavity and reflector design for vertical cavity surface emitting lasers
TE Sale
IEE Proceedings-Optoelectronics 142 (1), 37-43, 1995
Optically transparent indium-tin-oxide (ITO) ohmic contacts in the fabrication of vertical-cavity surface-emitting lasers
MA Matin, AF Jezierski, SA Bashar, DE Lacklison, TM Benson, TS Cheng, ...
Electronics Letters 30 (4), 318-320, 1994
Quantifying the effect of indirect carrier leakage on visible Al (GaInP) lasers using high pressures and low temperatures
SJ Sweeney, G Knowles, TE Sale, AR Adams
physica status solidi (b) 223 (2), 567-572, 2001
Development of a red VCSEL-to-plastic fiber module for use in parallel optical data links
JD Lambkin, T Calvert, B Corbett, J Woodhead, SM Pinches, ...
Vertical-Cavity Surface-Emitting Lasers IV 3946, 95-105, 2000
Excitation power and barrier width dependence of photoluminescence in piezoelectric multiquantum well pin structures
JPR David, TE Sale, AS Pabla, PJ Rodríguez‐Gironés, J Woodhead, ...
Applied physics letters 68 (6), 820-822, 1996
High purity AlGaAs from methyl-based precursors using in situ gettering of alkoxides
JS Roberts, JPR David, TE Sale, PL Tihanyi
Journal of crystal growth 143 (3-4), 135-140, 1994
Photomodulated reflectance as a valuable nondestructive process tool for VCSELs
TE Sale, TJC Hosea, PJS Thomas
IEEE Photonics Technology Letters 12 (10), 1328-1330, 2000
Quantum‐Well and Cavity‐Mode Resonance Effects in a Vertical‐Cavity Surface‐Emitting Laser Structure, Observed by Photoreflectance Using Hydrostatic Pressure and Temperature Tuning
PMA Vicente, PJS Thomas, D Lancefield, TE Sale, TJC Hosea, AR Adams, ...
physica status solidi (b) 211 (1), 255-262, 1999
Photomodulated reflectance of microcavity vertical-cavity surface emitting laser structures: Monitoring higher-order quantum well transitions
PJ Klar, G Rowland, PJS Thomas, A Onischenko, TE Sale, TJC Hosea, ...
Physical Review B 59 (4), 2902, 1999
Carrier screening effects in piezoelectric strained InGaAs/GaAs quantum wells grown on the [111]B axis
TE Sale, J Woodhead, GJ Rees, R Grey, JPR David, AS Pabla, ...
Journal of applied physics 76 (9), 5447-5452, 1994
Wide operating wavelength range and low threshold current In/sub 0.24/Ga/sub 0.76/As/GaAs vertical-cavity surface-emitting lasers
TE Sale, J Woodhead, R Grey, PN Robson
IEEE Photonics Technology Letters 4 (11), 1192-1194, 1992
Influence of leakage and gain-cavity alignment on the performance of Al (GaInP) visible vertical-cavity surface emitting lasers
G Knowles, SJ Sweeney, T Sale
IEE Proceedings-Optoelectronics 148 (1), 55-59, 2001
Using strained system materials to improve the performance of 850 nm surface- and edge-emitting lasers
TE Sale, C Amamo, Y Ohiso, T Kurokawa
Applied physics letters 71 (8), 1002-1004, 1997
Edge-emission electroluminescence study of as-grown vertical-cavity surface-emitting laser structures
S Ghosh, S Constant, TJC Hosea, TE Sale
Journal of Applied Physics 88 (3), 1432-1438, 2000
Progress in the design and development of AlGaInP visible VCSELs
AI Onischenko, TE Sale, EP O'Reilly, AR Adams, SM Pinches, JEF Frost, ...
IEE Proceedings-Optoelectronics 147 (1), 15-21, 2000
28-Gbps 850-nm oxide VCSEL development and manufacturing progress at Avago
TR Fanning, J Wang, ZW Feng, M Keever, C Chu, A Sridhara, C Rigo, ...
Vertical-Cavity Surface-Emitting Lasers XVIII 9001, 900102, 2014
Evaluating the continuous-wave performance of AlGaInP-based red (667 nm) vertical-cavity surface-emitting lasers using low-temperature and high-pressure techniques
SJ Sweeney, G Knowles, TE Sale
Applied Physics Letters 78 (7), 865-867, 2001
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