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Nonlinear quantum logic with colliding graphene plasmons

delete2023-03-17
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OA
AI
G
Giuseppe Calajò *
P
Philipp K. Jenke
L
Lee A. Rozema
P
Philip Walther
D
Darrick E. Chang
J
Joel D. Cox
DOI:10.1103/PhysRevResearch.5.013188delete
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摘要

摘要

En 中文
Graphene has emerged as a promising platform to bring nonlinear quantum optics to the nanoscale, where a large intrinsic optical nonlinearity enables long-lived and actively tunable plasmon polaritons to strongly interact. Here we theoretically study the collision between two counter-propagating plasmons in a graphene nanoribbon, where transversal subwavelength confinement endows propagating plasmons with a flat band dispersion that enhances their interaction. This scenario presents interesting possibilities towards the implementation of multi -mode polaritonic gates that circumvent limitations imposed by the Shapiro no-go theorem for photonic gates in nonlinear optical fibers. As a paradigmatic example we demonstrate the feasibility of a high-fidelity conditional pi phase shift (CZ), where the gate performance is fundamentally limited only by the single-plasmon lifetime. These results open exciting avenues towards quantum information and many-body applications with strongly interacting polaritons.
Keyword:
POLARITONS
LIGHT
LOCALIZATION
GAS

期刊

Physical Review Research 封面图
Physical Review Research
IF:
4.2
论文数:
7.6K
被引数:
2.7W

机构

B
barcelona institute of science & technology
学者数:
1.2W
论文数: 9.7K
被引数: 36
I
institut de ciencies fotoniques (icfo)
学者数:
612
论文数: 468
被引数: 4
U
University of Vienna
学者数:
1.7W
论文数: 1.6W
被引数: 40
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