Polarization switching performance of VCSEL subjected to optical pulse injection
Bing-Xing Yang, Xia Guang-Qiong, Lin Xiao-dong, Wu Zheng-Mao, 西南大学物理学院,重庆 400715
Abstract
Bing-Xing Yang, Xia Guang-Qiong, Lin Xiao-dong, Wu Zheng-Mao, 西南大学物理学院,重庆 400715
Abstract
Based on the rate equations describing the dynamic characteristics of the master and slave vertical cavity surface emitting laser (M-VCSEL,S-VCSEL), under the modulation of pulsed bias current,the polarization characteristics of M-VCSEL output and the polarization switching performance of S-VCSEL subjected to optical pulse output from the M-VCSEL have been investigated. The results show that periodical pulses can be obtained by adding a periodical pulsed current on the M-VCSEL. Under injection of the optical pulsed from M-VCSEL, the output power of S-VCSEL will switch periodically between two orthogonal polarizations,and the period is equal to the period of the modulated current in M-VCSEL. Through changing the modulated amplitude of current in M-VCSEL,the orthogonal polarization suppression ratio (OPSR) can be controlled easily.
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Based on the rate equations describing the dynamic characteristics of the master and slave vertical cavity surface emitting laser (M-VCSEL,S-VCSEL), under the modulation of pulsed bias current,the polarization characteristics of M-VCSEL output and the polarization switching performance of S-VCSEL subjected to optical pulse output from the M-VCSEL have been investigated. The results show that periodical pulses can be obtained by adding a periodical pulsed current on the M-VCSEL. Under injection of the optical pulsed from M-VCSEL, the output power of S-VCSEL will switch periodically between two orthogonal polarizations,and the period is equal to the period of the modulated current in M-VCSEL. Through changing the modulated amplitude of current in M-VCSEL,the orthogonal polarization suppression ratio (OPSR) can be controlled easily.
Key concepts: Vertical-cavity surface-emitting laser, Polarization (electrochemistry), Materials science, Orthogonal polarization spectral imaging, Optoelectronics, Laser, Optics, Amplitude