Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates (e-bog) af Gro, Christian
Gro, Christian (forfatter)

Spin Squeezing and Non-linear Atom Interferometry with Bose-Einstein Condensates e-bog

436,85 DKK (inkl. moms 546,06 DKK)
Interferometry, the most precise measurement technique known today, exploits the wave-like nature of the atoms or photons in the interferometer. As expected from the laws of quantum mechanics, the granular, particle-like features of the individually independent atoms or photons are responsible for the precision limit, the shot noise limit. However this &quote;classical&quote; bound is not funda...
E-bog 436,85 DKK
Forfattere Gro, Christian (forfatter)
Forlag Springer
Udgivet 12 januar 2012
Genrer PDD
Sprog English
Format pdf
Beskyttelse LCP
ISBN 9783642256370
Interferometry, the most precise measurement technique known today, exploits the wave-like nature of the atoms or photons in the interferometer. As expected from the laws of quantum mechanics, the granular, particle-like features of the individually independent atoms or photons are responsible for the precision limit, the shot noise limit. However this "e;classical"e; bound is not fundamental and it is the aim of quantum metrology to overcome it by employing entanglement among the particles. This work reports on the realization of spin-squeezed states suitable for atom interferometry. Spin squeezing was generated on the basis of motional and spin degrees of freedom, whereby the latter allowed the implementation of a full interferometer with quantum-enhanced precision.