Terahertz Second-Harmonic Generation from Lightwave Acceleration of Symmetry-Breaking Nonlinear Supercurrents

We report terahertz (THz) light-induced second harmonic generation, in superconductors with inversion symmetry that forbid even-order nonlinearities. The THz second harmonic emission vanishes above the superconductor critical temperature and arises from precession of twisted Anderson pseudospins at...

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Veröffentlicht in:Physical review letters 2020-05, Vol.124 (20), p.1-207003, Article 207003
Hauptverfasser: Vaswani, C., Mootz, M., Sundahl, C., Mudiyanselage, D. H., Kang, J. H., Yang, X., Cheng, D., Huang, C., Kim, R. H. J., Liu, Z., Luo, L., Perakis, I. E., Eom, C. B., Wang, J.
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Sprache:eng
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Zusammenfassung:We report terahertz (THz) light-induced second harmonic generation, in superconductors with inversion symmetry that forbid even-order nonlinearities. The THz second harmonic emission vanishes above the superconductor critical temperature and arises from precession of twisted Anderson pseudospins at a multicycle, THz driving frequency that is not allowed by equilibrium symmetry. We explain the microscopic physics by a dynamical symmetry breaking principle at sub-THz-cycle by using quantum kinetic modeling of the interplay between strong THz-lightwave nonlinearity and pulse propagation. The resulting nonzero integrated pulse area inside the superconductor leads to light-induced nonlinear supercurrents due to subcycle Cooper pair acceleration, in contrast to dc-biased superconductors, which can be controlled by the band structure and THz driving field below the superconducting gap.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.124.207003