Quantum‐Enhanced Sensing Based on Time Reversal of Entangling Interactions Quantum‐Enhanced Sensing Based on Time Reversal of Entangling Interactions

Quantum‐Enhanced Sensing Based on Time Reversal of Entangling Interactions

    • $119.99
    • $119.99

Publisher Description

Quantum mechanics entails effects like superpositions and entanglement, which have no classical counterparts. From a technological standpoint these counterintuitive quantum aspects can be viewed as an unexploited resource that can be harnessed to support various tasks, e.g. in the domains of computation, communication, and metrology.

In many applications, however, the potential of nonclassical states cannot practically be exploited due to detection inefficiencies. The authors address this limitation by experimentally realizing a novel detection scheme in which entangling interactions are time reversed. In this way, nonclassical many-particle states are disentangled, allowing them to be detected in a robust and technically feasible manner. In the context of quantum metrology, these nonlinear readout techniques extend the class of entangled probe states that can be leveraged for sensing applications without being limited by finite detector resolution.

The authors present an active atom interferometer, where both the entangled state preparation and disentangling readout involve parametric amplification. This “SU(1,1)” interferometer is implemented with the help of spinor Bose–Einstein condensates, where amplification is implemented by atomic collisions leading to spin exchange.

GENRE
Science & Nature
RELEASED
2018
28 July
LANGUAGE
EN
English
LENGTH
183
Pages
PUBLISHER
Springer International Publishing
SELLER
Springer Nature B.V.
SIZE
4.9
MB

More Books Like This

Interferometry with Interacting Bose-Einstein Condensates in a Double-Well Potential Interferometry with Interacting Bose-Einstein Condensates in a Double-Well Potential
2015
Quantum Entanglement and Information Processing Quantum Entanglement and Information Processing
2004
Quantum Computing in Solid State Systems Quantum Computing in Solid State Systems
2006
Artificial Gauge Fields with Ultracold Atoms in Optical Lattices Artificial Gauge Fields with Ultracold Atoms in Optical Lattices
2015
Physics on Ultracold Quantum Gases Physics on Ultracold Quantum Gases
2018
From Atomic To Mesoscale: The Role Of Quantum Coherence In Systems Of Various Complexities From Atomic To Mesoscale: The Role Of Quantum Coherence In Systems Of Various Complexities
2015