Sensing multiatom networks in cavities via photon-induced excitation resonance
Fuente:
arXiv
Salvato in:
| Autori principali: | , , , , |
|---|---|
| Natura: | Preprint |
| Pubblicazione: |
2024
|
| Soggetti: | |
| Accesso online: | |
| Tags: |
Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
|
| _version_ | 1866912519180779520 |
|---|---|
| author | Chattopadhyay, Pritam Misra, Avijit Sur, Saikat Petrosyan, David Kurizki, Gershon |
| author_facet | Chattopadhyay, Pritam Misra, Avijit Sur, Saikat Petrosyan, David Kurizki, Gershon |
| contents | We explore the distribution in space and time of a single-photon excitation shared by a network of dipole-dipole interacting atoms that are also coupled to a common photonic field mode. Time-averaged distributions reveal partial trapping of the excitation near the initially excited atom. This trapping is associated with resonances of the excitation at crossing points of the photon-dressed energy eigenvalues of the network. The predicted photon-induced many-atom trapped excitation (PIMATE) is sensitive to atomic position disorder which broadens the excitation resonances and transforms them to avoided crossings. PIMATE is shown to allow highly effective and accurate sensing of multi-atom networks and their disorder. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2411_09465 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Sensing multiatom networks in cavities via photon-induced excitation resonance Chattopadhyay, Pritam Misra, Avijit Sur, Saikat Petrosyan, David Kurizki, Gershon Quantum Physics We explore the distribution in space and time of a single-photon excitation shared by a network of dipole-dipole interacting atoms that are also coupled to a common photonic field mode. Time-averaged distributions reveal partial trapping of the excitation near the initially excited atom. This trapping is associated with resonances of the excitation at crossing points of the photon-dressed energy eigenvalues of the network. The predicted photon-induced many-atom trapped excitation (PIMATE) is sensitive to atomic position disorder which broadens the excitation resonances and transforms them to avoided crossings. PIMATE is shown to allow highly effective and accurate sensing of multi-atom networks and their disorder. |
| title | Sensing multiatom networks in cavities via photon-induced excitation resonance |
| topic | Quantum Physics |
| url | https://arxiv.org/abs/2411.09465 |