Experimental Signatures for Identifying Distinct Origins of Color Field Generation

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Hauptverfasser: N., Subramanya Bhat K., Das, Amita, Paradkar, Bhooshan, Ravishankar, V
Format: Preprint
Veröffentlicht: 2025
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author N., Subramanya Bhat K.
Das, Amita
Paradkar, Bhooshan
Ravishankar, V
author_facet N., Subramanya Bhat K.
Das, Amita
Paradkar, Bhooshan
Ravishankar, V
contents Signatures for non-abelian dynamics have long been central to QCD and QGP. Equally important are they in spin systems and laser-plasma interactions, where they emerge as effective interactions. Distinguishing experimentally gauge inequivalent sources (and hence potentials) that produce the same field tensor is one major task in this endeavour. As a step in this direction, this paper investigates how physically distinct sources which produce the same color electric field (uniform and constant) may be distinguished experimentally in a gauge-invariant manner. We first study the motion of a test particle in such fields and show that the resultant trajectories are counterintuitive. We then examine the radiation emitted - both gluonic and photonic and show that each source (independent non-abelian configuration) leaves a unique signature in the energy spectra, laying the ground for application to specific physical systems.
format Preprint
id arxiv_https___arxiv_org_abs_2503_20522
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Experimental Signatures for Identifying Distinct Origins of Color Field Generation
N., Subramanya Bhat K.
Das, Amita
Paradkar, Bhooshan
Ravishankar, V
Plasma Physics
Other Condensed Matter
High Energy Physics - Phenomenology
High Energy Physics - Theory
Nuclear Theory
Signatures for non-abelian dynamics have long been central to QCD and QGP. Equally important are they in spin systems and laser-plasma interactions, where they emerge as effective interactions. Distinguishing experimentally gauge inequivalent sources (and hence potentials) that produce the same field tensor is one major task in this endeavour. As a step in this direction, this paper investigates how physically distinct sources which produce the same color electric field (uniform and constant) may be distinguished experimentally in a gauge-invariant manner. We first study the motion of a test particle in such fields and show that the resultant trajectories are counterintuitive. We then examine the radiation emitted - both gluonic and photonic and show that each source (independent non-abelian configuration) leaves a unique signature in the energy spectra, laying the ground for application to specific physical systems.
title Experimental Signatures for Identifying Distinct Origins of Color Field Generation
topic Plasma Physics
Other Condensed Matter
High Energy Physics - Phenomenology
High Energy Physics - Theory
Nuclear Theory
url https://arxiv.org/abs/2503.20522