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Enhancement of electron–positron pairs in combined potential wells with linear chirp frequency
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作者 王莉 李烈娟 +4 位作者 麦丽开·麦提斯迪克 安荣 李静静 谢柏松 张丰收 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第1期153-160,共8页
Effect of linear chirp frequency on the process of electron–positron pairs production from vacuum is investigated by the computational quantum field theory.With appropriate chirp parameters,the number of electrons cr... Effect of linear chirp frequency on the process of electron–positron pairs production from vacuum is investigated by the computational quantum field theory.With appropriate chirp parameters,the number of electrons created under combined potential wells can be increased by two or three times.In the low frequency region,frequency modulation excites interference effect and multiphoton processes,which promotes the generation of electron–positron pairs.In the high frequency region,high frequency suppression inhibits the generation of electron–positron pairs.In addition,for a single potential well,the number of created electron–positron pairs can be enhanced by several orders of magnitude in the low frequency region. 展开更多
关键词 electron–positron pairs linear chirp frequency the computational quantum field theory
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Wavelength-swept fiber laser based on bidirectional used linear chirped fiber Bragg grating 被引量:1
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作者 LIN WANG MINGGUI WAN +4 位作者 ZHENKUN SHEN XUDONG WANG YUAN CAO XINHUAN FENG BAI-OU GUAN 《Photonics Research》 SCIE EI 2017年第3期219-223,共5页
A wavelength-swept fiber laser is proposed and successfully demonstrated based on a bidirectional used linear chirped fiber Bragg grating(LC-FBG). The wavelength-swept operation principle is based on intracavity pulse... A wavelength-swept fiber laser is proposed and successfully demonstrated based on a bidirectional used linear chirped fiber Bragg grating(LC-FBG). The wavelength-swept operation principle is based on intracavity pulse stretching and compression. The LC-FBG can introduce equivalent positive and negative dispersion simultaneously, which enables a perfect dispersion matching to obtain wide-bandwidth mode-locking. Experimental results demonstrate a wavelength-swept fiber laser that exhibits a sweep rate of about 5.4 MHz over a 2.1 nm range at a center wavelength of 1550 nm. It has the advantages of simple configuration and perfect dispersion matching in the laser cavity. 展开更多
关键词 FBG MHz or nm of Wavelength-swept fiber laser based on bidirectional used linear chirped fiber Bragg grating LC in mode that been is OC SOA on
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