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Flip-angle dependence of nonequilibrium states yielding information on connectivity of transitions and energy levels of oriented molecules. A modified Z-COSY experiment

Grace, Christy Rani R and Kumar, A (1992) Flip-angle dependence of nonequilibrium states yielding information on connectivity of transitions and energy levels of oriented molecules. A modified Z-COSY experiment. In: Journal of Magnetic Resonance, 99 (1). pp. 81-98.

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Abstract

Nonlinear measurement of the nonequilibrium state of the spin system of oriented acetone by different flip angles of the measuring pulse leads to dramatically different intensities. While such spectra contain information on the connectivity of transitions, it is shown that the low-flip-angle experiment, in the linear regime, yields information on direct connectivities. It is shown that a totality of information on the direct connectivity is obtained by a two-dimensional experiment, namely $90°-t_1-\alpha_\Psi-τ_\delta-β_\psi-t_2$. A systematic analysis of this connectivity information leads to a complete reconstruction of the energy-level system of the various symmetry domains of oriented acetone, a six-spin system characterized by $C_{3v} ⊗ C_{3v}$ symmetry. A computer program has been written to reconstruct the energy-level system from the connectivity information. This leads to, in favorable cases, complete information on the parameters of the spin Hamiltonian.

Item Type: Journal Article
Publication: Journal of Magnetic Resonance
Department/Centre: Division of Physical & Mathematical Sciences > Physics
Date Deposited: 11 Dec 2006
Last Modified: 27 Aug 2008 12:26
URI: http://eprints.iisc.ac.in/id/eprint/8937

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