Superluminal spacetime boundary, time reflection and quantum light generation from relativistic plasma mirrors
A plasma mirror is an optical device for high-power, ultrashort-wavelength electromagnetic fields, utilizing a sheet of relativistic oscillating electrons to generate and manipulate light. In this work, we propose that the spatiotemporally varying plasma oscillation, induced by an ultra-high-intensi...
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Zusammenfassung: | A plasma mirror is an optical device for high-power, ultrashort-wavelength
electromagnetic fields, utilizing a sheet of relativistic oscillating electrons
to generate and manipulate light. In this work, we propose that the
spatiotemporally varying plasma oscillation, induced by an ultra-high-intensity
laser beam, functions as a "spacetime mirror" with significant potential for
exploring quantum light. We find that the spacetime mirror exhibits several
exotic features: (i) a superluminal spacetime boundary, (ii) time reflection
and refraction, and (iii) quantum light sources with pair generation. Our
theoretical and simulation results are in excellent agreement, and experimental
verification is underway. Our work demonstrates the interplay with emerging
fields such as time varying media, suggesting the plasma mirror as an ideal
platform to study strong-field quantum optics at extremes. |
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DOI: | 10.48550/arxiv.2410.01287 |