TY - GEN
T1 - Comparisons on Ξ-, Λ- And V-Type Atomic Receivers in Wireless Communication and Sensing
AU - Zhao, Junrui
AU - Xiang, Yiyue
AU - Xiao, Pei
AU - Peng, Qihao
AU - Ye, Neng
N1 - Publisher Copyright:
© 2026 IEEE.
PY - 2026
Y1 - 2026
N2 - Atomic receiver based on the Electromagnetically Induced Transparency (EIT) demonstrates its potential in high sensitivity, miniaturization and wide frequency range wireless communication and sensing. Existing experiments have confirmed that EIT can be realized in Ladder(Ξ)-, Lambda(Λ)- and Vee(V)-type, each corresponding to distinct atomic excitation pathways. However, existing research on atomic receiver mainly focuses on the Ξ-type, overlooking the other two types. In this paper, we analyze the four-level configuration of Λ- and V-type atomic receivers under signal field for the first time. In particular, by using the rotating-wave transformation, we extend the three-level Hamiltonian to four-level system under the influence of the external signal field, and analyze how this interaction alters the EIT spectrum. Then, based on the master equation, we analyze and compare the performance of three systems for wireless communication and sensing. Under typical settings in currently reported experiments, result shows that Ξ-type system performs better in sensitivity and available frequency, while V-type system performs better in instantaneous bandwidth and Λ-type exhibits an exceptionally stable EIT window in complex electromagnetic environments.
AB - Atomic receiver based on the Electromagnetically Induced Transparency (EIT) demonstrates its potential in high sensitivity, miniaturization and wide frequency range wireless communication and sensing. Existing experiments have confirmed that EIT can be realized in Ladder(Ξ)-, Lambda(Λ)- and Vee(V)-type, each corresponding to distinct atomic excitation pathways. However, existing research on atomic receiver mainly focuses on the Ξ-type, overlooking the other two types. In this paper, we analyze the four-level configuration of Λ- and V-type atomic receivers under signal field for the first time. In particular, by using the rotating-wave transformation, we extend the three-level Hamiltonian to four-level system under the influence of the external signal field, and analyze how this interaction alters the EIT spectrum. Then, based on the master equation, we analyze and compare the performance of three systems for wireless communication and sensing. Under typical settings in currently reported experiments, result shows that Ξ-type system performs better in sensitivity and available frequency, while V-type system performs better in instantaneous bandwidth and Λ-type exhibits an exceptionally stable EIT window in complex electromagnetic environments.
KW - Electromagnetically induced transparency
KW - Rydberg atomic receiver
KW - wireless communication
KW - wireless sensing
UR - https://www.scopus.com/pages/publications/105045588402
U2 - 10.1109/ICCWorkshops63917.2026.11586508
DO - 10.1109/ICCWorkshops63917.2026.11586508
M3 - Conference contribution
AN - SCOPUS:105045588402
T3 - 2026 IEEE International Conference on Communications Workshops, ICC Workshops 2026 - Proceedings
BT - 2026 IEEE International Conference on Communications Workshops, ICC Workshops 2026 - Proceedings
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2026 IEEE International Conference on Communications Workshops, ICC Workshops 2026
Y2 - 24 May 2026 through 28 May 2026
ER -