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Effect of Phase Modulation on Electromagnetically Induced Grating in a Five-Level M-Type Atomic System

Effect of Phase Modulation on Electromagnetically Induced Grating in a Five-Level M-Type Atomic System
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摘要 We theoretically investigate the phenomena of electromagnetically induced grating in an M-type five-level atomic system. It is found that a weak field can be effectively diffracted into high-order directions using a standing wave coupling field, and different depths of the phase modulation can disperse the diffraction light into different orders. When the phase modulation depth is approximated to the orders of π, 2π and 3π, the first-, second- and third-order diffraction intensity reach the maximum, respectively. Thus we can take advantage of the phase modulation to control the probe light dispersing into the required high orders. We theoretically investigate the phenomena of electromagnetically induced grating in an M-type five-level atomic system. It is found that a weak field can be effectively diffracted into high-order directions using a standing wave coupling field, and different depths of the phase modulation can disperse the diffraction light into different orders. When the phase modulation depth is approximated to the orders of π, 2π and 3π, the first-, second- and third-order diffraction intensity reach the maximum, respectively. Thus we can take advantage of the phase modulation to control the probe light dispersing into the required high orders.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第7期96-100,共5页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos 11274112 and 11474092 the Key Project of Shanghai Municipal Education Commission under Grant No 14ZZ056 the Shanghai Natural Science Fund Project under Grant No14ZR1410300 the Key Research Project of Henan Province Education Department under Grant No 13A140818
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