English

$\mathcal{PT}$ symmetry-protected exceptional cones and analogue Hawking radiation

Mesoscale and Nanoscale Physics 2023-04-18 v4 General Relativity and Quantum Cosmology High Energy Physics - Theory

Abstract

Non-Hermitian Hamiltonians, which effectively describe dissipative systems, and analogue gravity models, which simulate properties of gravitational objects, comprise seemingly different areas of current research. Here, we investigate the interplay between the two by relating parity-time-symmetric dissipative Weyl-type Hamiltonians to analogue Schwarzschild black holes emitting Hawking radiation. We show that the exceptional points of these Hamiltonians form tilted cones mimicking the behavior of the light cone of a radially infalling observer approaching a black hole horizon. We further investigate the presence of tunneling processes, reminiscent of those happening in black holes, in a concrete example model. We interpret the non-trivial result as the purely thermal contribution to analogue Hawking radiation in a Schwarzschild black hole. Assuming that our particular Hamiltonian models a photonic crystal, we discuss the concrete nature of the analogue Hawking radiation in this particular setup.

Keywords

Cite

@article{arxiv.2106.05030,
  title  = {$\mathcal{PT}$ symmetry-protected exceptional cones and analogue Hawking radiation},
  author = {Marcus Stålhammar and Jorge Larana-Aragon and Lukas Rødland and Flore K. Kunst},
  journal= {arXiv preprint arXiv:2106.05030},
  year   = {2023}
}

Comments

Accepted in New Journal of Physics 12+3 pages, 2+1 figures