Numerical analysis of Solomon echo amplitudes in static solids

被引:14
作者
Man, PP
机构
[1] Laboratoire de Chimie des Surfaces, CNRS URA 1428, Univ. Pierre et Marie Curie, 75252 Paris Cedex 05
关键词
D O I
10.1063/1.473111
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
For the first time a numerical procedure for computing the Solomon echo amplitudes of half-integer quadrupole spins (I=3/2, 5/2, 7/2, and 9/2) has been derived from a detailed analysis of the evolution of the spin system using the density operator formalism. As the first-order quadrupole interaction is taken into account throughout the experiment, consisting in exciting the spin system with two pulses either in phase or in quadrature phase and separated by a delay tau(2), the results are valid for any ratio of the quadrupole coupling, omega(Q), to the amplitude of the pulses, omega(rf). These results are applicable to Light nuclei at high magnetic field, for which the second-order quadrupole interaction and the chemical shift anisotropy are negligible. We predict (4I(2)-1)(2I-1)/16 echoes and their positions in the detection period tau(r), (I-1/2)(2) of which are allowed echoes, the others being forbidden echoes. All of these echoes are satellite-transition signals, which are superimposed on the free induction decay (FID) of the central transition following the second pulse. This means that tau(2) must be short when compared to the duration of the central-transition FID. In other words, during tau(2) the magnetic dipole interactions have no time to affect the evolution of the spin system. The behavior of the tau(4)=tau(2) echoes versus the second-pulse flip angle omega(rf)t(3) is analyzed: in the hard-pulse excitation condition (omega(Q)/omega(rf)much less than 1), the (+/-1/2<->+/-3/2) echoes generated by two pulses in quadrature Phase are twice as large as those generated by two in-phase pulses; the echoes of the other transitions have comparable amplitudes. The echo amplitudes in the soft-pulse excitation condition (omega(Q)/omega(rf)=1) are also presented. (C) 1997 American Institute of Physics.
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页码:3908 / 3919
页数:12
相关论文
共 64 条
[1]  
ABRAGAM A, 1961, PRINCIPLES NUCLEAR M
[2]   ANALYTICAL SOLUTIONS FOR SPIN 7-2 LINE-INTENSITIES IN SOLID-STATE NMR [J].
AGEEV, SZ ;
SANCTUARY, BC .
MOLECULAR PHYSICS, 1995, 84 (05) :835-844
[3]   SIMULATION OF NMR POWDER SPECTRA [J].
AMOUREUX, JP ;
FERNANDEZ, C ;
CARPENTIER, L ;
COCHON, E .
PHYSICA STATUS SOLIDI A-APPLIED RESEARCH, 1992, 132 (02) :461-475
[4]   HIGH-RESOLUTION SOLID-STATE NMR FOR SPIN 3/2 AND 9/2 - THE MULTIQUANTUM TRANSITIONS METHOD [J].
AMOUREUX, JP .
SOLID STATE NUCLEAR MAGNETIC RESONANCE, 1993, 2 (1-2) :83-88
[5]   POWDER DETERMINATION OF K-39 NUCLEAR-QUADRUPOLE COUPLING [J].
BASTOW, TJ .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1991, 87 (15) :2453-2455
[6]   NUCLEAR MAGNETIC RESONANCE AND QUADRUPOLE EFFECTS IN KBR AND NABR SINGLE CRYSTALS [J].
BONERA, G ;
AVOGADRO, A ;
BORSA, F .
PHYSICAL REVIEW, 1968, 165 (02) :391-&
[7]   PHASE-DEPENDENCE OF QUADRUPOLAR ECHOES IN SOLIDS [J].
BONERA, G ;
GALIMBERTI, M .
SOLID STATE COMMUNICATIONS, 1966, 4 (11) :589-+
[8]  
BORSA F, 1991, TOPICS CURRENT PHYSI, V45
[9]   SPIN ECHOES IN SOLIDS [J].
BUTTERWORTH, J .
PROCEEDINGS OF THE PHYSICAL SOCIETY OF LONDON, 1965, 86 (550P) :297-+
[10]  
CAMPOLIETI G, 1993, J MAGN RESON SER A, V104, P242