TY - JOUR
T1 - A theoretical analysis of the origin of the second-order nonlinear optical properties of octupolar molecules. The case of triamino-trinitrobenzene
AU - Pierce, B. M.
AU - Zyss, J.
AU - Joffre, M.
N1 - Publisher Copyright:
© 1993 SPIE. All rights reserved.
PY - 1993/12/16
Y1 - 1993/12/16
N2 - The off-resonant π-electronic component of the β tensor, βπ, is calculated and analyzed for an octupolar molecule with D3h point group symmetry, l,3,5-triamino-2,4,6-trinitrobenzene (TATB), and the related dipolar molecule with C2V point group symmetry, para-nitroaniline (pNA). The βπ' for TATB and pNA are calculated using the semi-empirical INDO/S Hamiltonian combined with single- and doubleexcitation configuration interaction of singlet π-electron configurations, and Orr and Ward's sum-overstates expression for β. The sum-over-states approach permits one to identify the salient 1ππ∗ states participating in the virtual electronic excitations that define the off-resonant βπ's for TATB and pNA. It is found that in addition to the ground electronic state, a pair of doubly degenerate 1ππ∗ states contribute strongly to the off-resonant βπ for TATB This finding is in contrast to the single 1ππ∗ charge-transfer state that principally defines the off-resonant βπ for dipolar, conjugated π-electron molecules like pNA. The natures of the two doubly-degenerate 1ππ∗ states important to the off-resonant βπ for TATB are analyzed in terms of their electronic spectroscopy and π-electron charge distributions. The familiar two-state, singleterm approximation of βπ used for dipolar molecules is not sufficient for octupolar molecules, and a multistate, multi-term approximation is derived for TATB.
AB - The off-resonant π-electronic component of the β tensor, βπ, is calculated and analyzed for an octupolar molecule with D3h point group symmetry, l,3,5-triamino-2,4,6-trinitrobenzene (TATB), and the related dipolar molecule with C2V point group symmetry, para-nitroaniline (pNA). The βπ' for TATB and pNA are calculated using the semi-empirical INDO/S Hamiltonian combined with single- and doubleexcitation configuration interaction of singlet π-electron configurations, and Orr and Ward's sum-overstates expression for β. The sum-over-states approach permits one to identify the salient 1ππ∗ states participating in the virtual electronic excitations that define the off-resonant βπ's for TATB and pNA. It is found that in addition to the ground electronic state, a pair of doubly degenerate 1ππ∗ states contribute strongly to the off-resonant βπ for TATB This finding is in contrast to the single 1ππ∗ charge-transfer state that principally defines the off-resonant βπ for dipolar, conjugated π-electron molecules like pNA. The natures of the two doubly-degenerate 1ππ∗ states important to the off-resonant βπ for TATB are analyzed in terms of their electronic spectroscopy and π-electron charge distributions. The familiar two-state, singleterm approximation of βπ used for dipolar molecules is not sufficient for octupolar molecules, and a multistate, multi-term approximation is derived for TATB.
U2 - 10.1117/12.165242
DO - 10.1117/12.165242
M3 - Conference article
AN - SCOPUS:84894394007
SN - 0277-786X
VL - 2025
SP - 2
EP - 13
JO - Proceedings of SPIE - The International Society for Optical Engineering
JF - Proceedings of SPIE - The International Society for Optical Engineering
T2 - Nonlinear Optical Properties of Organic Materials VI 1993
Y2 - 11 July 1993 through 16 July 1993
ER -