Investigating Josephson plasmons in layered cuprates via nonlinear terahertz spectroscopy

Fuente: arXiv
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Main Authors: Fiore, Jacopo, Sellati, Niccolò, Gabriele, Francesco, Castellani, Claudio, Seibold, Goetz, Udina, Mattia, Benfatto, Lara
Format: Preprint
Published: 2023
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author Fiore, Jacopo
Sellati, Niccolò
Gabriele, Francesco
Castellani, Claudio
Seibold, Goetz
Udina, Mattia
Benfatto, Lara
author_facet Fiore, Jacopo
Sellati, Niccolò
Gabriele, Francesco
Castellani, Claudio
Seibold, Goetz
Udina, Mattia
Benfatto, Lara
contents Josephson plasmons in layered superconductors represent a natural source of optical non-linearity, thanks to their intrinsically anharmonic nature. Here we derive the selection rules behind non-linear plasmonics showing its dependence on plasmonic branches hidden to other spectroscopies, like RIXS. We benchmark our results for the case of layered cuprates, showing how in a layered system the combined effect of plasmon dispersion and light polarization can move the resonance of the bilayer system away from the plasma edge measured in linear spectroscopy. Our results demonstrate the dependence of the non-linear THz response on the convoluted plasmon dispersion in a momentum region complementary to RIXS, and offer a possible perspective for the generation of THz pulses by artificially designed Josephson heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2310_16815
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Investigating Josephson plasmons in layered cuprates via nonlinear terahertz spectroscopy
Fiore, Jacopo
Sellati, Niccolò
Gabriele, Francesco
Castellani, Claudio
Seibold, Goetz
Udina, Mattia
Benfatto, Lara
Superconductivity
Josephson plasmons in layered superconductors represent a natural source of optical non-linearity, thanks to their intrinsically anharmonic nature. Here we derive the selection rules behind non-linear plasmonics showing its dependence on plasmonic branches hidden to other spectroscopies, like RIXS. We benchmark our results for the case of layered cuprates, showing how in a layered system the combined effect of plasmon dispersion and light polarization can move the resonance of the bilayer system away from the plasma edge measured in linear spectroscopy. Our results demonstrate the dependence of the non-linear THz response on the convoluted plasmon dispersion in a momentum region complementary to RIXS, and offer a possible perspective for the generation of THz pulses by artificially designed Josephson heterostructures.
title Investigating Josephson plasmons in layered cuprates via nonlinear terahertz spectroscopy
topic Superconductivity
url https://arxiv.org/abs/2310.16815