4.7 Article

Even harmonic generation in isotropic media of dissociating homonuclear molecules

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SCIENTIFIC REPORTS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep32653

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资金

  1. European Research Council [XCHEM 290853]
  2. MINECO [FIS2013-42002-R]
  3. ERA-Chemistry [PIM2010EEC-00751, DFG SM 292/3-1]
  4. European COST Action [XLIC CM1204]
  5. CAM project NANOFRONTMAG
  6. FCT - Fundacao para a Ciencia e Tecnologia, Portugal [SFRH/BD/84053/2012]
  7. EPSRC programme [EP/I032517/1]
  8. Voronezh State University
  9. [MC-ITN CORIN]
  10. Fundação para a Ciência e a Tecnologia [SFRH/BD/84053/2012] Funding Source: FCT
  11. Engineering and Physical Sciences Research Council [EP/I032517/1] Funding Source: researchfish
  12. EPSRC [EP/I032517/1] Funding Source: UKRI

向作者/读者索取更多资源

Isotropic gases irradiated by long pulses of intense IR light can generate very high harmonics of the incident field. It is generally accepted that, due to the symmetry of the generating medium, be it an atomic or an isotropic molecular gas, only odd harmonics of the driving field can be produced. Here we show how the interplay of electronic and nuclear dynamics can lead to a marked breakdown of this standard picture: a substantial part of the harmonic spectrum can consist of even rather than odd harmonics. We demonstrate the effect using ab-initio solutions of the time-dependent Schrodinger equation for H-2(+) and its isotopes in full dimensionality. By means of a simple analytical model, we identify its physical origin, which is the appearance of a permanent dipole moment in dissociating homonuclear molecules, caused by light-induced localization of the electric charge during dissociation. The effect arises for sufficiently long laser pulses and the region of the spectrum where even harmonics are produced is controlled by pulse duration. Our results (i) show how the interplay of femtosecond nuclear and attosecond electronic dynamics, which affects the charge flow inside the dissociating molecule, is reflected in the nonlinear response, and (ii) force one to augment standard selection rules found in nonlinear optics textbooks by considering light-induced modifications of the medium during the generation process.

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