A unified treatment of selection rules and symmetry relations for sum-frequency and second harmonic spectroscopies

被引:254
作者
Moad, AJ [1 ]
Simpson, GJ [1 ]
机构
[1] Purdue Univ, Dept Chem, W Lafayette, IN 47907 USA
关键词
D O I
10.1021/jp035362i
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A simplifying treatment is developed for describing the molecular origins of electric dipole allowed sumfrequency generation (SFG) and second harmonic generation (SHG). The full sum-over-states expressions for the nonlinear polarizability simplify tremendously at or near resonance to straightforward formulas easily connected to intuitive molecular properties. For resonance enhancement at the sum or second harmonic frequency, the molecular nonlinear polarizability tensor is shown to be the direct product of the transition moment and the two-photon absorption (TPA) polarizability tensor. To our knowledge, this is the first rigorous mathematical demonstration indicating such a simple relationship directly connecting second harmonic generation with TPA, providing a link between the two fields of inquiry. Under resonance enhancement with one of the incident frequencies, the SFG and SHG nonlinear polarizability tensors similarly are given by the products of the transition moments and the anti-Stokes Raman polarizability tensors (a reasonably well-known result for SFG). Under double-resonance conditions (i.e., resonant with one of the incident frequencies and the sum frequency), the two descriptions for the nonlinear polarizability become mathematically equivalent. Nonlinear optical character tables for both SHG and SFG under all resonance conditions have been compiled for chromophores of C-s, C-2, C-2v, and C-3v symmetries. Explicit evaluation of the corresponding orientational averages for each allowed transition in each character table assuming a uniaxial macroscopic orientation distribution reveals numerous relationships connecting the microscopic symmetry with the macroscopic nonlinear response. The approaches developed in this work are sufficiently general to allow their use in interpreting electronic, vibrational, and vibronic spectroscopic measurements by SHG and SFG.
引用
收藏
页码:3548 / 3562
页数:15
相关论文
共 101 条
  • [1] SFG STUDY OF 2-DIMENSIONAL ORIENTATION OF SURFACE METHYL-GROUPS ON CADMIUM ARACHIDATE LANGMUIR-BLODGETT-FILMS
    AKAMATSU, N
    DOMEN, K
    HIROSE, C
    [J]. JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (39) : 10070 - 10075
  • [2] Phenomenological damping of nonlinear-optical response tensors
    Andrews, DL
    Naguleswaran, S
    Stedman, GE
    [J]. PHYSICAL REVIEW A, 1998, 57 (06): : 4925 - 4929
  • [3] Polarizability and the resonance scattering of light: Damping sign issues
    Andrews, DL
    Romero, LCD
    Stedman, GE
    [J]. PHYSICAL REVIEW A, 2003, 67 (05): : 4
  • [4] SUM-FREQUENCY VIBRATIONAL SPECTROSCOPY OF THE SOLID-LIQUID INTERFACE
    BAIN, CD
    [J]. JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1995, 91 (09): : 1281 - 1296
  • [5] Relation between bond-length alternation and two-photon absorption of a push-pull conjugated molecules: a quantum-chemical study
    Bartkowiak, W
    Zalesny, R
    Leszczynski, J
    [J]. CHEMICAL PHYSICS, 2003, 287 (1-2) : 103 - 112
  • [6] Sum-frequency vibrational spectroscopy on chiral liquids: A novel technique to probe molecular chirality
    Belkin, MA
    Kulakov, TA
    Ernst, KH
    Yan, L
    Shen, YR
    [J]. PHYSICAL REVIEW LETTERS, 2000, 85 (21) : 4474 - 4477
  • [7] Coupled-oscillator model for nonlinear optical activity
    Belkin, MA
    Shen, YR
    Flytzanis, C
    [J]. CHEMICAL PHYSICS LETTERS, 2002, 363 (5-6) : 479 - 485
  • [8] Measurement and analysis of molecular hyperpolarizability in the two-photon resonance regime
    Berkovic, G
    Meshulam, G
    Kotler, Z
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2000, 112 (09) : 3997 - 4003
  • [9] THEORETICAL-ANALYSIS OF THE 2-PHOTON PROPERTIES OF LINEAR POLYENES AND THE VISUAL CHROMOPHORES
    BIRGE, RR
    PIERCE, BM
    [J]. JOURNAL OF CHEMICAL PHYSICS, 1979, 70 (01) : 165 - 178
  • [10] BLEKIN MA, 2001, PHYS REV LETT, V87