Calibration method for phase modulator, calibration method for balanced photodetector, and calibration system for phase modulator
A phase modulator calibration method includes steps of: providing a first delay interferometer to be used as a phase calibration reference and a second delay interferometer in which a phase modulator to be calibrated is installed in an optical path; for each of the first and second delay interferometers, measuring a delay time based on a time interval between pulses split from one input pulse and synchronizing the delay time with a cycle of a transmission clock; for the first delay interferometer, adjusting a phase difference so that input continuous-wave laser light produces an intensity-enhancing interference at an output; and determining the control signal with a calibration circuitry formed by connecting the first delay interferometer as a front stage and the second delay interferometer as a rear stage in a cascaded manner.
1 . A phase modulator calibration method of calibrating a phase modulator whose phase modulation amount is controlled by a control signal, the method comprising steps of:
providing a first delay interferometer to be used as a phase calibration reference and a second delay interferometer in which a phase modulator to be calibrated is installed in an optical path;
for each of the first and second delay interferometers, measuring a delay time based on a time interval between pulses split from one input pulse and synchronizing the delay time with a cycle of a transmission clock;
for the first delay interferometer, adjusting a phase difference so that input continuous-wave laser light produces an intensity-enhancing interference at an output; and
determining the control signal with a calibration circuitry formed by connecting the first delay interferometer as a front stage and the second delay interferometer as a rear stage in a cascaded manner.
2 . The phase modulator calibration method according to claim 1 ,
wherein the step of adjusting the phase difference of the first delay interferometer is performed by adjusting a temperature of the first delay interferometer.
3 . The phase modulator calibration method according to claim 1 ,
wherein the step of adjusting the phase difference of the first delay interferometer is performed by measuring an extinction ratio at the output and performing an adjustment so that the extinction ratio is maximized.
4 . The phase modulator calibration method according to claim 1 ,
wherein the step of determining the control signal comprises:
while inputting pulse laser light into an input of the front stage and measuring an intensity of a central pulse positioned at a midpoint between a leading pulse and a trailing pulse split from one pulse and outputted from the rear stage, adjusting the control signal to determine a control signal that produces a maximum intensity of the central pulse as a 0-degree control signal and to determine a control signal that produces a minimum intensity of the central pulse as a 180-degree control signal.
5 . A balanced photodetector calibration method comprising steps of, in the calibration circuitry in which the phase modulator has been calibrated by the phase modulator calibration method according to claim 4 :
inputting the continuous-wave laser light to the input of the front stage and alternately repeating the 0-degree control signal and the 180-degree control signal to control the phase modulator; and
adjusting a gain of a balanced photodetector connected to an output of the rear stage so that an extinction ratio measured with the balanced photodetector is maximized.
6 . A calibration system of a phase modulator whose phase modulation amount is controlled by a control signal, the calibration system comprising:
a calibration circuitry including: a first delay interferometer to be used as a phase calibration reference; and a second delay interferometer in which a phase modulator to be calibrated is installed in an optical path,
a light source configured to input light to the calibration circuitry;
a photodetector connected to an output of the calibration circuitry; and
a control signal generator configured to generate the control signal,
wherein the first delay interferometer and the second delay interferometer are connected in cascade as a front stage and a rear stage, respectively,
a delay time is measured for each of the first delay interferometer and the second delay interferometer, based on a time interval between pulses split from one input pulse, and the delay time is synchronized with a cycle of a transmission clock,
a phase difference is adjusted for the first delay interferometer so that input continuous-wave laser light produces an intensity-enhancing interference at an output, and
the control signal is determined with the calibration circuitry.