Spatially hybrid control of entanglement between atom and photon

被引:1
|
作者
Batoo, Khalid Mujasam [1 ]
Naeem, Youssef Ali [2 ]
Ali, Eyhab [3 ]
Abdulameer, Maha Khalid [4 ,5 ]
Ibrahim, Ahmed Ahmed [6 ]
Abdulridui, Hussam Abdali [7 ]
Zazoum, Bouchaib [8 ]
Ramadan, Montather F. [9 ]
Kadhum, Eftikhaar Hasan [10 ]
Omran, Alaa A. [11 ]
Alzubaidi, Laith H. [12 ,13 ,14 ]
机构
[1] King Saud Univ, King Abdullah Inst Nanotechnol, Riyadh 11451, Saudi Arabia
[2] Al Manara Coll Med Sci, Maysan, Iraq
[3] Al Zahraa Univ Women, Karbala, Iraq
[4] Al Noor Univ Coll, Dept Radiol, Nineveh, Iraq
[5] Al Noor Univ Coll, Sonar Tech, Nineveh, Iraq
[6] King Saud Univ, Coll Sci, Dept Phys & Astron, POB 2455, Riyadh 11451, Saudi Arabia
[7] Al Hadi Univ Coll, Baghdad 10011, Iraq
[8] Southern Arkansas Univ, Dept Engn & Phys, Magnolia, AR 71753 USA
[9] Al Ayen Univ, Coll Dent, Thi Qar, Iraq
[10] Natl Univ Sci & Technol, Dhi Qar, Iraq
[11] Al Nisour Univ Coll, Dept Engn, Baghdad, Iraq
[12] Islamic Univ, Coll Tech Engn, Najaf, Iraq
[13] Islamic Univ Al Diwaniyah, Coll Tech Engn, Diwaniyah, Iraq
[14] Islamic Univ, Coll Tech Engn, Babylon, Iraq
关键词
Composite vortex light; Plasmonic structure; Degree of entanglement; Atomic system; 4-LEVEL QUANTUM SYSTEM; GOOS-HANCHEN SHIFTS; 3-LEVEL ATOM; ENHANCEMENT; BEAMS;
D O I
10.1016/j.physb.2024.416561
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
In this study, we introduced a model utilizing a plasmonic nanostructure to modulate the entanglement between atoms and photons within a V-type atomic medium. This system is influenced by composite optical vortex light (COVL) and two incoherent pumping fields. The plasmonic nanostructure comprises dielectric nanospheres, which have been thoroughly investigated (Phys. Rev. B 106, 035419, 2022). By adjusting the orbital angular momentum (OAM) of COVL, we demonstrate that the nanostructure induces significant spatial variations in the degree of entanglement (DEM). Additionally, incorporating a weak incoherent pumping field affects the DEM profile within the hybrid system. Our findings reveal that the OAM of structured light can govern the spatial dependence of DEM, particularly when quantum interference from the nanostructure and pumping fields surpasses a specific threshold. Furthermore, our results suggest that analyzing the DEM profile's spatial regions can be employed to determine the OAM number of the structured light.
引用
收藏
页数:8
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