Details
Originalsprache | Englisch |
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Titel des Sammelwerks | Cavity Optomechanics |
Untertitel | Nano- and Micromechanical Resonators Interacting with Light |
Seiten | 25-56 |
Seitenumfang | 32 |
ISBN (elektronisch) | 9783642553127 |
Publikationsstatus | Veröffentlicht - 5 Juli 2014 |
Publikationsreihe
Name | Quantum Science and Technology |
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Herausgeber (Verlag) | Springer |
Abstract
This chapter reports on theoretical protocols for generating nonclassical states of light and mechanics. Nonclassical states are understood as squeezed states, entangled states or states with negativeWigner function, and the nonclassicality can refer either to light, to mechanics, or to both, light and mechanics. In all protocols nonclassicality arises from a strong optomechanical coupling. Some protocols rely in addition on homodyne detection or photon counting of light.
ASJC Scopus Sachgebiete
- Physik und Astronomie (insg.)
- Allgemeine Physik und Astronomie
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Cavity Optomechanics: Nano- and Micromechanical Resonators Interacting with Light. 2014. S. 25-56 (Quantum Science and Technology ).
Publikation: Beitrag in Buch/Bericht/Sammelwerk/Konferenzband › Beitrag in Buch/Sammelwerk › Forschung › Peer-Review
}
TY - CHAP
T1 - Nonclassical states of light and mechanics
AU - Hammerer, Klemens
AU - Genes, Claudiu
AU - Vitali, David
AU - Tombesi, Paolo
AU - Milburn, Gerard
AU - Simon, Christoph
AU - Bouwmeester, Dirk
PY - 2014/7/5
Y1 - 2014/7/5
N2 - This chapter reports on theoretical protocols for generating nonclassical states of light and mechanics. Nonclassical states are understood as squeezed states, entangled states or states with negativeWigner function, and the nonclassicality can refer either to light, to mechanics, or to both, light and mechanics. In all protocols nonclassicality arises from a strong optomechanical coupling. Some protocols rely in addition on homodyne detection or photon counting of light.
AB - This chapter reports on theoretical protocols for generating nonclassical states of light and mechanics. Nonclassical states are understood as squeezed states, entangled states or states with negativeWigner function, and the nonclassicality can refer either to light, to mechanics, or to both, light and mechanics. In all protocols nonclassicality arises from a strong optomechanical coupling. Some protocols rely in addition on homodyne detection or photon counting of light.
UR - http://www.scopus.com/inward/record.url?scp=84996839736&partnerID=8YFLogxK
U2 - 10.1007/978-3-642-55312-7_3
DO - 10.1007/978-3-642-55312-7_3
M3 - Contribution to book/anthology
AN - SCOPUS:84996839736
SN - 9783642553110
T3 - Quantum Science and Technology
SP - 25
EP - 56
BT - Cavity Optomechanics
ER -