• Optical Instruments
  • Vol. 46, Issue 1, 8 (2024)
Jinbiao ZHANG, Ruijie PENG, and Yan PENG*
Author Affiliations
  • School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
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    DOI: 10.3969/j.issn.1005-5630.202303060041 Cite this Article
    Jinbiao ZHANG, Ruijie PENG, Yan PENG. Regulation of blockade effect in terahertz-dressed Rydberg states[J]. Optical Instruments, 2024, 46(1): 8 Copy Citation Text show less
    Theoretical schematic diagram of energy level transition and atomic interaction
    Fig. 1. Theoretical schematic diagram of energy level transition and atomic interaction
    The dipole-dipole interaction potential of the Rydberg pair {|31P3/2|31P3/2}里德堡原子对{|31P3/2|31P3/2}偶极–偶极相互作用势曲线
    Fig. 2. The dipole-dipole interaction potential of the Rydberg pair {|31P3/2|31P3/2}里德堡原子对{|31P3/2|31P3/2}偶极–偶极相互作用势曲线
    Changes of energy level in the transition 31P3/2+31P3/2→31S1/2+32S1/2 and the relationship between the blockade radius and the Rabi frequency for Rydberg pair {|31P3/2|31P3/2} under different modes of atomic interaction31P3/2+31P3/2→31S1/2+32S1/2跃迁中能级变化以及里德堡原子对{|31P3/2|31P3/2}不同作用方式下阻塞半径与拉比频率的变化规律
    Fig. 3. Changes of energy level in the transition 31P3/2+31P3/2→31S1/2+32S1/2 and the relationship between the blockade radius and the Rabi frequency for Rydberg pair {|31P3/2|31P3/2} under different modes of atomic interaction31P3/2+31P3/2→31S1/2+32S1/2跃迁中能级变化以及里德堡原子对{|31P3/2|31P3/2}不同作用方式下阻塞半径与拉比频率的变化规律
    Rydberg blockade radius variation trendlines under different principal quantum numbers and the THz response frequencies under different transitional configurations
    Fig. 4. Rydberg blockade radius variation trendlines under different principal quantum numbers and the THz response frequencies under different transitional configurations
    Jinbiao ZHANG, Ruijie PENG, Yan PENG. Regulation of blockade effect in terahertz-dressed Rydberg states[J]. Optical Instruments, 2024, 46(1): 8
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