Quantum Zeno and Anti-Zeno Effects in the Dynamics of Non-Degenerate Hyper-Raman Processes Coupled to Two Linear Waveguides

被引:1
作者
Das, Moumita [1 ]
Sen, Biswajit [2 ]
Thapliyal, Kishore [3 ]
Pathak, Anirban [4 ]
机构
[1] Malda Coll, Dept Phys, Malda 732101, India
[2] Vidyasagar Teachers Training Coll, Dept Phys, Midnapore 721101, India
[3] Palacky Univ Olomouc, Joint Lab Opt Palacky Univ & Inst Phys, Czech Acad Sci, Fac Sci, 17 Listopadu 1192-12, Olomouc 77900, Czech Republic
[4] Jaypee Inst Informat Technol, A-10,Sect 62, Noida 201309, UP, India
关键词
hyper-Raman process; quantum Zeno effect; waveguides; DOWN-CONVERSION; COMMUNICATION; ENTANGLEMENT; CAVITY; DECAY;
D O I
10.1002/andp.202300196
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The effect of the presence of two probe waveguides on the dynamics of hyper-Raman processes is studied in terms of quantum Zeno and anti-Zeno effects. Specifically, the enhancement (diminution) of the evolution of the hyper-Raman processes due to interaction with the probe waveguides via evanescent waves is viewed as quantum Zeno (anti-Zeno) effect. This study considers the two probe waveguides interacting with only one of the optical modes at a time. For instance, as a specific scenario, it is considered that the two non-degenerate pump modes interact with each probe waveguide linearly, while Stokes and anti-Stokes modes do not interact with the probes. Similarly, in another scenario, it is assumed both the probe waveguides interact with Stokes (anti-Stokes) mode simultaneously. The present results show that quantum Zeno (anti-Zeno) effect is associated with phase-matching (mismatching). However, it do not find any relation between the presence of the quantum Zeno effect and antibunching in the bosonic modes present in the hyper-Raman processes. Quantum Zeno (anti-Zeno) effects are investigated with the help of two probes interacting with a system undergoing the hyper-Raman process. Each probe mode interacts with one of the pump, Stokes, and anti-Stokes modes at a time. The results demonstrate that the quantum Zeno (anti-Zeno) effects are closely associated with the phase matching (mismatching). image
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页数:15
相关论文
共 76 条
[1]   AN ALL-OPTICAL REALIZATION OF THE QUANTUM ZENO EFFECT [J].
AGARWAL, GS ;
TEWARI, SP .
PHYSICS LETTERS A, 1994, 185 (02) :139-142
[2]   Quantum Zeno manipulation of quantum dots [J].
Ahmadiniaz, N. ;
Geller, M. ;
Koenig, J. ;
Kratzer, P. ;
Lorke, A. ;
Schaller, G. ;
Schuetzhold, R. .
PHYSICAL REVIEW RESEARCH, 2022, 4 (03)
[3]   Quantum anti-Zeno effect without wave function reduction [J].
Ai, Qing ;
Xu, Dazhi ;
Yi, Su ;
Kofman, A. G. ;
Sun, C. P. ;
Nori, Franco .
SCIENTIFIC REPORTS, 2013, 3
[4]   Quantum anti-Zeno effect without rotating wave approximation [J].
Ai, Qing ;
Li, Yong ;
Zheng, Hang ;
Sun, C. P. .
PHYSICAL REVIEW A, 2010, 81 (04)
[5]  
[Anonymous], Zh. Eksp. Teor. Fiz, V33 33, P1371
[6]  
[Anonymous], Sov. Phys. Dokl, V2 2, P232
[7]  
[Anonymous], Sov. Phys. Dokl, V6 6, P1010
[8]  
[Anonymous], Dokl. Akad. Nauk SSSR, V141 141, P599
[9]   Quantum computing using dissipation to remain in a decoherence-free subspace [J].
Beige, A ;
Braun, D ;
Tregenna, B ;
Knight, PL .
PHYSICAL REVIEW LETTERS, 2000, 85 (08) :1762-1765
[10]   Demonstration of universal control between non-interacting qubits using the Quantum Zeno effect [J].
Blumenthal, E. ;
Mor, C. ;
Diringer, A. A. ;
Martin, L. S. ;
Lewalle, P. ;
Burgarth, D. ;
Whaley, K. B. ;
Hacohen-Gourgy, S. .
NPJ QUANTUM INFORMATION, 2022, 8 (01)