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Akademický článek
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Autor:
V. King, S.R. Chinn
Publikováno v:
IEEE Journal of Quantum Electronics. 42:1128-1136
We present a new 3-D transient model and new experimental data for Q-switched eyesafe microlasers based on (Er,Yb) glass with a Co2+ :spinel saturable absorber. Subnanosecond pulses have been achieved for the first time using shorter, more highly dop
Publikováno v:
Proceedings of IEE/LEOS Summer Topical Meetings: Integrated Optoelectronics.
Publikováno v:
Photonics in Switching.
High-speed clock recovery or clock synchronization is an important function in realizing future 100 Gb/s time division multiplexed (TDM) communication systems. Optical clock recovery techniques are attractive because they can accommodate bit rates in
Akademický článek
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Publikováno v:
Electronics Letters. 29:646
The fundamental and second-harmonic spectral characteristics of frequency modulation locking have been observed in strained-layer InGaAs quantum well Fabry-Perot ridge-waveguide lasers emitting at 980 nm.
Autor:
S.R. Chinn, Eric A. Swanson
Publikováno v:
Electronics Letters. 29:2025
The theoretical and measured limitations on dynamic range near strong reflections in optical coherence domain reflectometry arc examined. A model and data are presented that show that such blindness limitations can be caused by broad spectral tails f
Publikováno v:
Electronics Letters. 28:1175
Lorentzian frequency linewidths as narrow as 200 kHz have been measured in strained-layer InGaAs quantum-well Fabry-Perot ridge-waveguide lasers emitting at 980 nm. The contribution of 1/f frequency noise is evaluated by both spectral lineshape decon
Autor:
P.L. Kelley, S.R. Chinn
Publikováno v:
Optics Communications. 10:123-126
The transmission and reflection characteristics of distributed feedback (DFB) laser amplifiers are determined. Near the oscillation threshold of a DFB mode a relation is found between gain and bandwidth which can be used to obtain an expression for a
Autor:
S.R. Chinn
Publikováno v:
IEEE Journal of Quantum Electronics. 24:687-692
An analysis is presented of a semiconductor-laser linear phased array which uses a distributed, evanescent-coupled version of Y-junction branches to achieve mode discrimination. As in the Y-junction array, the in-phase fundamental mode has the inhere