Electronic resonances in broadband stimulated Raman spectroscopy.

G Batignani, E Pontecorvo, G Giovannetti, C Ferrante, G Fumero, T Scopigno
Author Information
  1. G Batignani: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.
  2. E Pontecorvo: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.
  3. G Giovannetti: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.
  4. C Ferrante: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.
  5. G Fumero: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.
  6. T Scopigno: Universitá di Roma "La Sapienza", Dipartimento di Fisica, Roma, I-00185, Italy.

Abstract

Spontaneous Raman spectroscopy is a formidable tool to probe molecular vibrations. Under electronic resonance conditions, the cross section can be selectively enhanced enabling structural sensitivity to specific chromophores and reaction centers. The addition of an ultrashort, broadband femtosecond pulse to the excitation field allows for coherent stimulation of diverse molecular vibrations. Within such a scheme, vibrational spectra are engraved onto a highly directional field, and can be heterodyne detected overwhelming fluorescence and other incoherent signals. At variance with spontaneous resonance Raman, however, interpreting the spectral information is not straightforward, due to the manifold of field interactions concurring to the third order nonlinear response. Taking as an example vibrational spectra of heme proteins excited in the Soret band, we introduce a general approach to extract the stimulated Raman excitation profiles from complex spectral lineshapes. Specifically, by a quantum treatment of the matter through density matrix description of the third order nonlinear polarization, we identify the contributions which generate the Raman bands, by taking into account for the cross section of each process.

References

  1. J Chem Phys. 2004 Aug 22;121(8):3632-42 [PMID: 15303930]
  2. Philos Trans A Math Phys Eng Sci. 2012 Aug 13;370(1972):3709-27 [PMID: 22753822]
  3. Opt Express. 2013 Mar 25;21(6):6866-72 [PMID: 23546068]
  4. Opt Express. 2007 Jul 9;15(14):8884-91 [PMID: 19547226]
  5. Phys Rev B Condens Matter. 1994 May 1;49(18):13259-13262 [PMID: 10010254]
  6. J Chem Phys. 2013 Sep 28;139(12):124113 [PMID: 24089756]
  7. Nat Commun. 2014 Jul 01;5:4288 [PMID: 24980429]
  8. J Chem Phys. 2008 Aug 14;129(6):064507 [PMID: 18715085]
  9. J Chem Phys. 2005 Jan 8;122(2):024505 [PMID: 15638596]
  10. J Phys Chem B. 2012 Sep 6;116(35):10522-34 [PMID: 22536751]
  11. Science. 2005 Nov 11;310(5750):1006-9 [PMID: 16284176]
  12. J Chem Phys. 2015 Mar 21;142(11):114201 [PMID: 25796242]
  13. Rev Sci Instrum. 2004 Nov;75(11):4971-80 [PMID: 17183413]
  14. Opt Express. 2011 Jan 17;19(2):1107-12 [PMID: 21263650]
  15. Proc Natl Acad Sci U S A. 2014 Jul 15;111(28):10191-6 [PMID: 24987121]
  16. J Phys Chem B. 2014 Jun 19;118(24):6915-21 [PMID: 24886226]
  17. Annu Rev Phys Chem. 2007;58:461-88 [PMID: 17105414]
  18. Phys Chem Chem Phys. 2015 Apr 28;17(16):10454-61 [PMID: 25802897]
  19. Chemphyschem. 2015 Nov 16;16(16):3438-43 [PMID: 26387662]
  20. Nature. 2009 Nov 12;462(7270):200-4 [PMID: 19907490]

Word Cloud

Created with Highcharts 10.0.0RamanfieldspectroscopymolecularvibrationsresonancecrosssectioncanbroadbandexcitationvibrationalspectraspectralthirdordernonlinearstimulatedSpontaneousformidabletoolprobeelectronicconditionsselectivelyenhancedenablingstructuralsensitivityspecificchromophoresreactioncentersadditionultrashortfemtosecondpulseallowscoherentstimulationdiverseWithinschemeengravedontohighlydirectionalheterodynedetectedoverwhelmingfluorescenceincoherentsignalsvariancespontaneoushoweverinterpretinginformationstraightforwardduemanifoldinteractionsconcurringresponseTakingexamplehemeproteinsexcitedSoretbandintroducegeneralapproachextractprofilescomplexlineshapesSpecificallyquantumtreatmentmatterdensitymatrixdescriptionpolarizationidentifycontributionsgeneratebandstakingaccountprocessElectronicresonances

Similar Articles

Cited By