IP Library Granted Patent US 10,892,831
Granted Patent B2
US 10,892,831 · App. 16/738,450 · Granted Jan 12, 2021

Mach-zehnder optical modulator and optical modulation method

Inventor: Manabu Watanabe (Kawasaki, JP)
Assignee: FUJITSU OPTICAL COMPONENTS LIMITED
H04B10/50575G02B6/29352G02F1/0123G02F1/2257H04B10/516G02F1/0121G02F1/225G02F2001/212
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Quick Facts
Patent No.
US 10,892,831
App. No.
16/738,450
Granted
Jan 12, 2021
Kind
B2
Abstract

A Mach-Zehnder optical modulator creates a first driving signal to be applied to a first section, and a second driving signal to be applied to a second section, and includes a generator, an optical modulator, and a setting unit. The generator generates a first dither signal and a second dither signal. The optical modulator optical modulates an optical signal into a quaternary or more value optical modulation signal by applying the first driving signal superimposed by the first dither signal, and by applying the second driving signal superposed by the second dither signal. The setting unit sets, when a length of the second section is n times as long as the first section, the first dither signal and the second dither signal to have a same phase, and sets such that an amplitude of the first dither signal is n times as large as that of the second dither signal.

Claims (27)

1. A Mach-Zehnder optical modulator comprising:

a first section and a second section that are arranged in at least one arm out of two arms in an optical waveguide through which an optical signal passes;

a creating unit that creates a first driving signal to be applied to the first section, and a second driving signal to be applied to the second section;

a generating unit that generates a first dither signal to be superimposed on the first driving signal, and a second dither signal to be superimposed on the second driving signal;

an optical modulating unit that optical modulates the optical signal into a quaternary or more value optical modulation signal by applying the first driving signal on which the first dither signal is superimposed to the first section, and by applying the second driving signal on which the second dither signal is superimposed to the second section; and

a setting unit that sets, when a length of the second section is n times as long as the length of the first section, the first dither signal and the second dither signal to have a same phase, and sets such that an amplitude of the first dither signal is n times as large as the amplitude of the second dither signal.

2. The Mach-Zehnder optical modulator according to claim 1 , wherein

the setting unit sets the first dither signal and the second dither signal to have the same phase, and sets such that the amplitude of the first dither signal is n times as large as the amplitude of the second dither signal when a modulation efficiency of the second section is set to be n times as high as the modulation efficiency of the first section, instead of setting the length of the second section to n times as long as the length of the first section.

3. The Mach-Zehnder optical modulator according to claim 1 , wherein

the creating unit creates a pulse amplitude modulation signal as the first driving signal and the second driving signal.

4. The Mach-Zehnder optical modulator according to claim 1 , wherein

the generating unit includes

a signal generating unit that generates the second dither signal;

an amplifying unit that amplifies an amplitude of the second dither signal n fold;

a first superimposing unit that handles the second dither signal that has been amplified n fold by the amplifying unit as the first dither signal, and that superimposes the first dither signal on the first driving signal; and

a second superimposing unit that superimposes the second dither signal on the second driving signal.

5. The Mach-Zehnder optical modulator according to claim 1 , further comprising:

a component detecting unit that detects a frequency component of the first dither signal and the second dither signal from the optical modulation signal of the optical modulating unit; and

a control unit that controls a bias of the optical waveguide to converge a bias of the optical modulating unit to an optimal point based on the frequency component detected by the component detecting unit.

6. The Mach-Zehnder optical modulator according to claim 1 , further comprising:

a component detecting unit that detects a frequency component of the first dither signal and the second dither signal from the optical modulation signal of the optical modulating unit; and

a control unit that adjusts a heater of the arm of the optical waveguide based on the frequency component detected by the component detecting unit, and controls the heater so as to converge a bias of the optical modulating unit to an optimal point.

7. An optical modulation method that is performed by a Mach-Zehnder optical modulator that includes a first section and a second section that are arranged in at least one arm out of two arms in an optical waveguide through which an optical signal passes, and that optical modulates the optical signal into a quaternary or more value optical modulation signal by applying a driving signal to the first section and the second section, the method comprising:

creating a first driving signal to be applied to the first section, and a second driving signal to be applied to the second section;

generating a first dither signal to be superimposed on the first driving signal, and a second dither signal to be superimposed on the second driving signal;

optical modulating the optical signal into the quaternary or more value optical modulation signal by applying the first driving signal on which the first dither signal is superimposed to the first section, and by applying the second driving signal on which the second dither signal is superimposed to the second section; and

setting, when a length of the second section is n times as long as the length of the first section, the first dither signal and the second dither signal to have a same phase, and such that an amplitude of the first dither signal is n times as large as the amplitude of the second dither signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: WATANABE, MANABU
To: FUJITSU OPTICAL COMPONENTS LIMITED
Reel/Frame 051536/0971 →
Priority Claims (1)
JP 2019-032860 · Feb 26, 2019 · national
Continuity (1)
Related Publication 20200272018A1 · Aug 27, 2020