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A magneto-gravitational trap for studies of gravitational quantum states
by
Voronin, A. Yu
, Nez, F.
, Widmann, E.
, Nesvizhevsky, V. V.
, Reynaud, S.
, Crivelli, P.
, Vasiliev, S. A.
in
Astronomy
/ Astrophysics and Cosmology
/ Atoms
/ Atoms & subatomic particles
/ Elementary Particles
/ Gravitation
/ Gravitational fields
/ Gravity
/ Hadrons
/ Heavy Ions
/ Magnetic fields
/ Magnetic moments
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Parameter estimation
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Experimental Physics
/ String Theory
2020
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A magneto-gravitational trap for studies of gravitational quantum states
by
Voronin, A. Yu
, Nez, F.
, Widmann, E.
, Nesvizhevsky, V. V.
, Reynaud, S.
, Crivelli, P.
, Vasiliev, S. A.
in
Astronomy
/ Astrophysics and Cosmology
/ Atoms
/ Atoms & subatomic particles
/ Elementary Particles
/ Gravitation
/ Gravitational fields
/ Gravity
/ Hadrons
/ Heavy Ions
/ Magnetic fields
/ Magnetic moments
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Parameter estimation
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Experimental Physics
/ String Theory
2020
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A magneto-gravitational trap for studies of gravitational quantum states
by
Voronin, A. Yu
, Nez, F.
, Widmann, E.
, Nesvizhevsky, V. V.
, Reynaud, S.
, Crivelli, P.
, Vasiliev, S. A.
in
Astronomy
/ Astrophysics and Cosmology
/ Atoms
/ Atoms & subatomic particles
/ Elementary Particles
/ Gravitation
/ Gravitational fields
/ Gravity
/ Hadrons
/ Heavy Ions
/ Magnetic fields
/ Magnetic moments
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Parameter estimation
/ Physics
/ Physics and Astronomy
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Experimental Physics
/ String Theory
2020
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A magneto-gravitational trap for studies of gravitational quantum states
Journal Article
A magneto-gravitational trap for studies of gravitational quantum states
2020
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Overview
Observation time is the key parameter for improving the precision of measurements of gravitational quantum states of particles levitating above a reflecting surface. We propose a new method of long confinement in such states of atoms, anti-atoms, neutrons and other particles possessing a magnetic moment. The earth gravitational field and a reflecting mirror confine particles in the vertical direction. The magnetic field originating from electric current passing through a vertical wire confines particles in the radial direction. Under appropriate conditions, motions along these two directions are decoupled to a high degree. We estimate characteristic parameters of the problem, and list possible systematic effects that limit storage times due to the coupling of the two motions.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V,SpringerOpen
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