Amplifying quantum discord during inflationary magnetogenesis through violation of parity
Sagarika Tripathy, Rathul Nath Raveendran, Krishnamohan Parattu, and, L. Sriramkumar

TL;DR
This paper investigates how parity violation during inflation enhances quantum discord and squeezing in electromagnetic fields, potentially impacting primordial magnetic field generation.
Contribution
It demonstrates that parity violation amplifies quantum discord and squeezing in inflationary electromagnetic fields, revealing new quantum features during magnetogenesis.
Findings
Parity violation increases squeezing amplitude.
Quantum discord is enhanced for one polarization state.
Evolution resembles charged scalar fields in electric fields.
Abstract
It is well known that, during inflation, the conformal invariance of the electromagnetic action has to be broken in order to produce magnetic fields of observed strengths today. Often, to further enhance the strengths of the magnetic fields, parity is also assumed to be violated when the fields are being generated. In this work, we examine the evolution of the quantum state of the Fourier modes of the non-conformally coupled and parity violating electromagnetic field during inflation. We utilize tools such as the Wigner ellipse, squeezing parameters and quantum discord to understand the evolution of the field. We show that the violation of parity leads to an enhancement of the squeezing amplitude and the quantum discord (or, equivalently, in this context, the entanglement entropy) associated with a pair of opposite wave vectors for one of the two states of polarization (and a…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Cosmology and Gravitation Theories · Geomagnetism and Paleomagnetism Studies
