Projekte affiliierter Personen pro Jahr
Abstract
Probing quantum entanglement with macroscopic objects allows us to test quantum mechanics in new regimes. One way to realize such behavior is to couple a macroscopic mechanical oscillator to a continuous light field via radiation pressure. In view of this, the system that is discussed comprises an optomechanical cavity driven by a coherent optical field in the unresolved sideband regime where we assume Gaussian states and dynamics. We develop a framework to quantify the amount of entanglement in the system numerically. Different from previous work, we treat non-Markovian noise and take into account both the continuous optical field and the cavity mode. We apply our framework to the case of the Advanced Laser Interferometer Gravitational-Wave Observatory and discuss the parameter regimes where entanglement exists, even in the presence of quantum and classical noises.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | 013175 |
| Seitenumfang | 14 |
| Fachzeitschrift | Physical Review Research |
| Jahrgang | 6 |
| Ausgabenummer | 1 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - Feb. 2024 |
ÖFOS 2012
- 103025 Quantenmechanik
- 103021 Optik
Fingerprint
Untersuchen Sie die Forschungsthemen von „Macroscopic quantum entanglement between an optomechanical cavity and a continuous field in presence of non-Markovian noise“. Zusammen bilden sie einen einzigartigen Fingerprint.Projekte
- 1 Laufend
-
Q-Xtreme: Macroscopic Quantum Superpositions
Aspelmeyer, M. (Projektleiter*in)
1/05/21 → 30/04/27
Projekt: Forschungsförderung
Zitationsweisen
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver