Title :
A Polarization-Independent Subnanosecond 2
2 Multicast-Capable Optical Switch Using a Sagnac Interferometer
Author :
Yi, Lilin ; Hu, Weisheng ; Dong, Yi ; Jin, Yaohui ; Guo, Wei ; Sun, Weiqiang
Author_Institution :
Shanghai Jiao Tong Univ., Shanghai
fDate :
4/15/2008 12:00:00 AM
Abstract :
We design and demonstrate a cost-effective 2times2 ultrafast multicast-capable optical switch (MCOS) based on a Sagnac interferometer. The Sagnac interferometer is composed of a LiNbO3 phase modulator (PM) with two polarization-maintaining pigtail fibers and a 3-dB polarization-maintaining coupler. The MCOS works at three states: cross, bar, and multicast, in the entire C-band (1525-1565 nm) by controlling the driven voltage of the PM. Polarization- dependence is eliminated by splicing the pigtail fibers of the PM and the 3-dB coupler with 0degand 90deg angles, respectively. The measured switching time is ~0.6 ns. Multiple 2times2 MCOS elements can be constructed into a large nonblocking N x N MCOS matrix.
Keywords :
Sagnac interferometers; lithium compounds; optical communication equipment; optical switches; packet switching; LiNbO3; Sagnac interferometer; bar state; cross state; multicast capable optical switch; multicast state; optical packet switch; phase modulator; polarization maintaining pigtail fiber; polarization-maintaining coupler; wavelength 1525 nm to 1565 nm; Optical design; Optical fiber couplers; Optical fiber polarization; Optical polarization; Optical switches; Phase modulation; Sagnac interferometers; Splicing; Time measurement; Voltage control; Multicast; Sagnac interferometer; optical packet switch; phase modulator (PM); polarization-independent; ultrafast;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2008.918236