Two cw single-mode violet (397 nm) diode lasers are locked to a single external-cavity master diode laser by optical injection locking. A double-pass 1.6 GHz acousto-optic modulator is used to provide a 3.2 GHz offset frequency between the two slave lasers. We achieve up to 20 mW usable output in each slave beam, with as little as 25 μW of injection power at room temperature. An optical heterodyne measurement of the beat note between the two slave beams gives a linewidth of ≤10 Hz at 3.2 GHz. We also estimate the free-running linewidth of the master laser to be approximately 3 MHz by optical heterodyning with a similar device
High-power, single-frequency, narrow-linewidth lasers emitting at tailored wavelength are desired fo...
Injection locking is a well known and commonly used method for coherent light amplification. Usually...
A novel injection locking architecture is demonstrated to simultaneously improve the axial mode line...
Two cw single-mode violet (397 nm) diode lasers are locked to a single external-cavity master diode ...
We report the generalization of the optical injection locking procedure to a battery of high power d...
We report the generalization of the optical injection locking procedure to a battery of high power d...
normal injection-locked semiconductor lasers, the modulation signals are applied to the slave laser....
We present a novel method to phase lock two lasers with a controllable frequency difference. A micro...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
Abstract: We identify key parameters that control the low-frequency damping commonly observed in opt...
Abstract—Nonlinear dynamics of semiconductor lasers is ap-plied for microwave frequency division. Op...
A semiconductor based, injection locked coupled optoelectronic oscillator is presented, operating at...
Abstract—CW injection locking of mode-locked semiconductor lasers has been experimentally demonstrat...
High-power, single-frequency, narrow-linewidth lasers emitting at tailored wavelength are desired fo...
Injection locking is a well known and commonly used method for coherent light amplification. Usually...
A novel injection locking architecture is demonstrated to simultaneously improve the axial mode line...
Two cw single-mode violet (397 nm) diode lasers are locked to a single external-cavity master diode ...
We report the generalization of the optical injection locking procedure to a battery of high power d...
We report the generalization of the optical injection locking procedure to a battery of high power d...
normal injection-locked semiconductor lasers, the modulation signals are applied to the slave laser....
We present a novel method to phase lock two lasers with a controllable frequency difference. A micro...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
This article presents the experimental demonstration of synchronization of two integrated semiconduc...
Abstract: We identify key parameters that control the low-frequency damping commonly observed in opt...
Abstract—Nonlinear dynamics of semiconductor lasers is ap-plied for microwave frequency division. Op...
A semiconductor based, injection locked coupled optoelectronic oscillator is presented, operating at...
Abstract—CW injection locking of mode-locked semiconductor lasers has been experimentally demonstrat...
High-power, single-frequency, narrow-linewidth lasers emitting at tailored wavelength are desired fo...
Injection locking is a well known and commonly used method for coherent light amplification. Usually...
A novel injection locking architecture is demonstrated to simultaneously improve the axial mode line...