Publication | Open Access
Precision and broadband frequency swept laser source based on high-order modulation-sideband injection-locking
60
Citations
19
References
2015
Year
PhotonicsDriven Radio FrequencyEngineeringLaser ScienceHigh-order Modulation-sideband Injection-lockingWavelength TuningSlave Diode LaserHigh-frequency DeviceLaser ApplicationsSlave LaserTunable LasersBroadband FrequencyOptical CommunicationMicrowave PhotonicsHigh-power LasersElectro-optics DeviceOptoelectronics
A precision and broadband laser frequency swept technique is experimentally demonstrated. Using synchronous current compensation, a slave diode laser is dynamically injection-locked to a specific high-order modulation-sideband of a narrow-linewidth master laser modulated by an electro-optic modulator (EOM), whose driven radio frequency (RF) signal can be agilely, precisely controlled by a frequency synthesizer, and the high-order modulation-sideband enables multiplied sweep range and tuning rate. By using 5th order sideband injection-locking, the original tuning range of 3 GHz and tuning rate of 0.5 THz/s is multiplied by 5 times to 15 GHz and 2.5 THz/s respectively. The slave laser has a 3 dB-linewidth of 2.5 kHz which is the same to the master laser. The settling time response of a 10 MHz frequency switching is 2.5 µs. By using higher-order modulation-sideband and optimized experiment parameters, an extended sweep range and rate could be expected.
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