The delayed self-heterodyne interferometric technique, first proposed in the context of semiconductor lasers, has been commonly used for over 20 years in the determination of the optical linewidth of lasers. We examine this technique in the light of recent work on fiber lasers, and point out further constraints in the applicability of these measurements. An approximate but simple and intuitive expression is provided for assessing the self-heterodyne technique when applied to fiber lasers
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...
We experimentally demonstrate a fiber laser with different linewidths based on self-injection lockin...
In this report, we give a deeper investigation of the loss-compensated recirculating de-layed self-h...
We proposed a method of measuring the intrinsic linewidth of semiconductor lasers, by us-ing self-he...
Linewidth measurements of a distributed feedback (DFB) fibre laser are made using delayed self heter...
The linewidth characteristics of a commercial tunable laser source (TLS) are measured experimentally...
Narrow linewidth (<lOOKHz) semiconductor lasers are expected to be a key technology in NASA'...
The authors demonstrated a delayed self-heterodyne interferometer with a recirculating delay, in whi...
A new implementation of frequency shifting for the delayed self-heterodyne interferometer (DSHI) is ...
A new method for the measurement of the linewidth enhancement factor of semiconductor lasers is pres...
A new implementation of frequency shifting for the delayed self-heterodyne interferometer (DSHI) is ...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...
We experimentally demonstrate a fiber laser with different linewidths based on self-injection lockin...
In this report, we give a deeper investigation of the loss-compensated recirculating de-layed self-h...
We proposed a method of measuring the intrinsic linewidth of semiconductor lasers, by us-ing self-he...
Linewidth measurements of a distributed feedback (DFB) fibre laser are made using delayed self heter...
The linewidth characteristics of a commercial tunable laser source (TLS) are measured experimentally...
Narrow linewidth (<lOOKHz) semiconductor lasers are expected to be a key technology in NASA'...
The authors demonstrated a delayed self-heterodyne interferometer with a recirculating delay, in whi...
A new implementation of frequency shifting for the delayed self-heterodyne interferometer (DSHI) is ...
A new method for the measurement of the linewidth enhancement factor of semiconductor lasers is pres...
A new implementation of frequency shifting for the delayed self-heterodyne interferometer (DSHI) is ...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diode narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber optical...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...
Semiconductor laser diodes with narrow linewidths (10 kHz-10 MHz) are essential for coherent fiber o...