TY - JOUR
T1 - Topological hybrid nanocavity for coupling phase transition
AU - Zhang, Hongyu
AU - Zheng, Yanji
AU - Yu, Zhi Ming
AU - Hu, Xiaoyong
AU - Lu, Cuicui
N1 - Publisher Copyright:
© 2021 IOP Publishing Ltd.
PY - 2021/12
Y1 - 2021/12
N2 - Topological photonic nanocavity provides a robust platform for realizing nano-photonic devices and studying light-matter interaction. Here, a topological photonic-plasmonic hybrid nanocavity, assembling a topological photonic crystal (PhC) nanocavity with a plasmonic nano-antenna, is proposed to have an ultra-high figure of merit Q/V of, which is two orders higher than that of the bare topological PhC nanocavity. The single-atom cooperativity parameter is improved by over 60 times due to the large enhancement of Q/V, which makes the coupling between light and a single emitter enter a strong coupling region in topological photonic realm for the first time. Meanwhile, strong coupling and weak coupling can be easily switched in the topological hybrid system by tuning the structure dimension of plasmonic nano-antennas. This work provides a robust platform to control coupling phase transition between light and a single emitter, which has great potential in topological lasers, quantum optics and quantum information.
AB - Topological photonic nanocavity provides a robust platform for realizing nano-photonic devices and studying light-matter interaction. Here, a topological photonic-plasmonic hybrid nanocavity, assembling a topological photonic crystal (PhC) nanocavity with a plasmonic nano-antenna, is proposed to have an ultra-high figure of merit Q/V of, which is two orders higher than that of the bare topological PhC nanocavity. The single-atom cooperativity parameter is improved by over 60 times due to the large enhancement of Q/V, which makes the coupling between light and a single emitter enter a strong coupling region in topological photonic realm for the first time. Meanwhile, strong coupling and weak coupling can be easily switched in the topological hybrid system by tuning the structure dimension of plasmonic nano-antennas. This work provides a robust platform to control coupling phase transition between light and a single emitter, which has great potential in topological lasers, quantum optics and quantum information.
KW - plasmonic nano-antenna
KW - strong coupling
KW - topological photonic crystal nanocavity
KW - topological photonics
UR - http://www.scopus.com/inward/record.url?scp=85121331142&partnerID=8YFLogxK
U2 - 10.1088/2040-8986/ac2fd2
DO - 10.1088/2040-8986/ac2fd2
M3 - Article
AN - SCOPUS:85121331142
SN - 2040-8978
VL - 23
JO - Journal of Optics (United Kingdom)
JF - Journal of Optics (United Kingdom)
IS - 12
M1 - 124002
ER -