arXiv:quant-ph/0604103AbstractReferencesReviewsResources
A novel interferometer to beat the standard quantum limit using optical transverse modes in multimode waveguide
Published 2006-04-14, updated 2006-05-03Version 3
We propose a novel interferometer by using optical transverse modes in multimode waveguide that can beat the standard quantum limit. In the scheme, the classical simulation of $N$-partical quantum entangled states is generated by using $N$ independent classical fields and linear optical elements. Similar to the quantum-enhanced measurements, the classical simulation can also achieve $\sqrt{N}$ enhancement over the precision of the measurement $N$ times for independent fields. Due to only using classical fields and linear optical elements, the scheme can be realized much more easily.
Comments: 9 pages, 3 figures,some errors corrected
Categories: quant-ph
Related articles: Most relevant | Search more
arXiv:1911.12971 [quant-ph] (Published 2019-11-29)
Efficient generation of multipartite W state using linear optical elements
Classical simulation of Quantum Entanglement using Optical Transverse Modes in Multimode Waveguides
Magnetic field sensing beyond the standard quantum limit using 10-spin NOON states