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Updated: Jan 8, 2026

Trapping of Micro Particles in Nanoplasmonic Optical Lattice
Published on: September 5, 2017
Fotones Emergentes y Confinamiento: Un Estudio Numérico sobre la Teoría de Gauge de Redes Z_{N}
Jeffrey Giansiracusa1, David Lanners1, Tin Sulejmanpasic1
1Durham University, Department of Mathematical Sciences, Durham DH1 3LP, United Kingdom.
Abstract:
We numerically study Z_{N} lattice gauge theories in 4D as prototypical models of systems with Z_{N} 1-form symmetry. For N≥3, we provide evidence that such systems exhibit not only the expected phases with spontaneously broken/restored symmetry but also a third photon phase. When present, the 1-form symmetry provides a precise notion of confinement, and it is commonly believed that confinement ensues due to the proliferation of extended, stringlike objects known as center vortices, which carry a Z_{N} flux. However, this picture is challenged by the three-phase scenario investigated here. We show that both the confined and the photon phases are associated with the proliferation of center vortices and that the key difference between them lies in whether or not vortex junctions-the monopoles- proliferate.
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