Rintaro Koda, Ph.D.

2005 University of California, Santa Barbara, Santa Barbara, CA, United States 
Electronics & Photonics
"Rintaro Koda"


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Larry Coldren grad student 2005 UC Santa Barbara
 (All-epitaxial, long-wavelength, vertical -cavity surface -emitting lasers using bipolar cascaded active region for high differential quantum efficiency.)
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Koda R, Wang CS, Lofgreen DD, et al. (2005) High-differential-quantum-efficiency, long-wavelength vertical-cavity lasers using five-stage bipolar-cascade active regions Applied Physics Letters. 86: 1-3
Wang CS, Koda R, Huntington AS, et al. (2005) >100% output differential efficiency 1.55-μm VCSELs using submonolayer superlattices digital-alloy multiple-active-regions grown by MBE on InP Journal of Crystal Growth. 277: 13-20
Reddy MHM, Asano T, Feezell D, et al. (2004) Selectively etched tunnel junction for lateral current and optical confinement InP-based vertical cavity lasers Journal of Electronic Materials. 33: 118-122
Asano T, Feezell D, Koda R, et al. (2003) InP-based all-epitaxial 1.3-μm VCSELs with selectivity etched AlInAs apertures and Sb-based DBRs Ieee Photonics Technology Letters. 15: 1333-1335
Reddy MHM, Buell DA, Feezell D, et al. (2003) Continuous-wave operation of 1.55-μm vertical-cavity surface-emitting laser with digital-alloy active region using submonolayer superlattices Ieee Photonics Technology Letters. 15: 891-893
Reddy MHM, Buell DA, Huntington AS, et al. (2003) Al0.95Ga0.05As0.56Sb0.44 for lateral oxide-confinement layer in InP-based devices Applied Physics Letters. 82: 1329-1331
Reddy MHM, Buell DA, Asano T, et al. (2003) Lattice-matched Al0.95Ga0.05AsSb oxide for current confinement in InP-based long wavelength VCSELs Journal of Crystal Growth. 251: 766-770
Reddy MHM, Buell DA, Huntington AS, et al. (2002) Current status of epitaxial 1.31-1.55 μm VCSELs on InP Leos Summer Topical Meeting. 2002: 58-59
Royo P, Koda R, Coldren LA. (2002) Vertical cavity semiconductor optical amplifiers: Comparison of Fabry-Pérot and rate equation approaches Ieee Journal of Quantum Electronics. 38: 279-284
Royo P, Koda R, Coldren LA. (2002) Rate equations of vertical-cavity semiconductor optical amplifiers Applied Physics Letters. 80: 3057-3059
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