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Cottingham formula and nucleon polarisabilities
by
Rusetsky, A.
, Gasser, J.
, Leutwyler, H.
, Hoferichter, M.
in
Astronomy
/ Astrophysics and Cosmology
/ Cross sections
/ Elastic scattering
/ Electromagnetism
/ Elementary Particles
/ Forward scattering
/ Hadrons
/ Heavy Ions
/ Mathematical analysis
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Nucleons
/ Physics
/ Physics and Astronomy
/ Poles
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Theoretical Physics
/ Representations
/ String Theory
/ Sum rules
2015
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Cottingham formula and nucleon polarisabilities
by
Rusetsky, A.
, Gasser, J.
, Leutwyler, H.
, Hoferichter, M.
in
Astronomy
/ Astrophysics and Cosmology
/ Cross sections
/ Elastic scattering
/ Electromagnetism
/ Elementary Particles
/ Forward scattering
/ Hadrons
/ Heavy Ions
/ Mathematical analysis
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Nucleons
/ Physics
/ Physics and Astronomy
/ Poles
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Theoretical Physics
/ Representations
/ String Theory
/ Sum rules
2015
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Cottingham formula and nucleon polarisabilities
by
Rusetsky, A.
, Gasser, J.
, Leutwyler, H.
, Hoferichter, M.
in
Astronomy
/ Astrophysics and Cosmology
/ Cross sections
/ Elastic scattering
/ Electromagnetism
/ Elementary Particles
/ Forward scattering
/ Hadrons
/ Heavy Ions
/ Mathematical analysis
/ Measurement Science and Instrumentation
/ Nuclear Energy
/ Nuclear Physics
/ Nucleons
/ Physics
/ Physics and Astronomy
/ Poles
/ Quantum Field Theories
/ Quantum Field Theory
/ Regular Article - Theoretical Physics
/ Representations
/ String Theory
/ Sum rules
2015
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Journal Article
Cottingham formula and nucleon polarisabilities
2015
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Overview
The difference between the electromagnetic self-energies of proton and neutron can be calculated with the Cottingham formula, which expresses the self-energies as an integral over the electroproduction cross sections – provided the nucleon matrix elements of the current commutator do not contain a fixed pole. We show that, under the same proviso, the subtraction function occurring in the dispersive representation of the virtual Compton forward scattering amplitude is determined by the cross sections. The representation in particular leads to a parameter-free sum rule for the nucleon polarisabilities. We evaluate the sum rule for the difference between the electric polarisabilities of proton and neutron by means of the available parameterisations of the data and compare the result with experiment.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V
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