Title :
A novel frequency discriminated phase controller for high-speed optical clocks generated from laser diodes
Author_Institution :
Graduate Inst. of Opto-Electron. Technol., Nat. Taipei Univ. of Technol., Taiwan
fDate :
4/1/2002 12:00:00 AM
Abstract :
We demonstrate the in-situ frequency discrimination and continuous phase tuning of high-speed optical clocks generated from a directly modulated/encoded laser diode with respect to a free-running microwave clock. This is performed by using a DC-voltage controlled, frequency-discriminated optoelectronic phase shifter (OEPS). The transfer function of the phase shifter versus controlled voltage is linear with a maximum phase-tuning range of up to 1.957π (340°). The tuning responsivity of the OEPS can be adjusted from 50 to 90°/V. The fluctuation and drift in phase of the controlled signal are about 0.05° and 0.003°/min. The tuning resolution of 0.2° at a 3-mV increment of controlling voltage is achieved by using a high-precision voltage regulator. Relative timing jitter of the controlled optical microwave clock is less than 5 ps
Keywords :
clocks; optical modulation; optical phase locked loops; optical phase shifters; optical transfer function; optical tuning; phase control; semiconductor lasers; timing jitter; voltage regulators; DC-voltage controlled frequency-discriminated optoelectronic phase shifter; OEPLL technology; broad-band clock signal generation; continuous phase tuning; controlled optical microwave clock; controlled signal phase; controlling voltage; directly modulated/encoded laser diode; free-running microwave clock; frequency discriminated phase controller; high-precision voltage regulator; high-speed optical clocks; in-situ frequency discrimination; laser diodes; maximum phase-tuning range; optical clock generation; optoelectronic phase-locked loop technology; phase drift; phase fluctuation; phase shifter transfer function; timing jitter; tuning resolution; tuning responsivity; Clocks; Frequency; High speed optical techniques; Laser tuning; Microwave generation; Optical control; Optical modulation; Optical tuning; Phase shifters; Voltage control;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on