Simulating ultrastrong-coupling processes breaking parity conservation in Jaynes-Cummings systems
Authors:
- Carlos Sánchez Muñoz,
- Anton Frisk Kockum,
- Adam Miranowicz,
- Franco Nori
Abstract
We propose the effective simulation of light-matter ultrastrong-coupling phenomena with strong-coupling systems. Recent theory and experiments have shown that the quantum Rabi Hamiltonian can be simulated by a Jaynes-Cummings system with the addition of two classical drives. This allows one to implement nonlinear processes that do not conserve the total number of excitations. However, parity is still a conserved quantity in the quantum Rabi Hamiltonian, which forbids a wide family of processes involving virtual transitions that break this conservation. Here, we show that these parity-nonconserving processes can be simulated and that this can be done in an even simpler setup: a Jaynes-Cummings-type system with the addition of a single classical drive. By shifting the paradigm from simulating a particular model to simulating a particular process, we are able to implement a much wider family of nonlinear coherent protocols than in previous simulation approaches, doing so with fewer resources and constraints. We focus our analysis on three particular examples: a single atom exciting two photons, frequency conversion, and a single photon exciting two atoms.
- Record ID
- UAM40f958c4c17c40ef93474aa7e6b4c448
- Author
- Journal series
- Physical Review A, ISSN 2469-9926, e-ISSN 2469-9934
- Issue year
- 2020
- Vol
- 102
- No
- 3
- ASJC Classification
- DOI
- DOI:10.1103/PhysRevA.102.033716 Opening in a new tab
- Language
- (en) English
- Score (nominal)
- 100
- Score source
- journalList
- Score
- = 100.0, 13-05-2022, ArticleFromJournal
- Publication indicators
- = 8; : 2017 = 0.886; : 2019 (2 years) = 2.777 - 2019 (5 years) =2.598
- Uniform Resource Identifier
- https://researchportal.amu.edu.pl/info/article/UAM40f958c4c17c40ef93474aa7e6b4c448/
- URN
urn:amu-prod:UAM40f958c4c17c40ef93474aa7e6b4c448
* presented citation count is obtained through Internet information analysis and it is close to the number calculated by the Publish or PerishOpening in a new tab system.