Theory of long-lived nuclear spin states in solution nuclear magnetic resonance. I. Singlet states in low magnetic field.
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[1] R. Ghose. Average Liouvillian theory in nuclear magnetic resonance—principles, properties, and applications , 2000 .
[2] W. Magnus. On the exponential solution of differential equations for a linear operator , 1954 .
[3] R. R. Ernst,et al. High‐Resolution NMR Study of Relaxation Mechanisms in a Two‐Spin System , 1970 .
[4] H. Carr,et al. The Principles of Nuclear Magnetism , 1961 .
[5] R. R. Ernst,et al. Cross relaxation in time-dependent nuclear spin systems: Invariant trajectory approach , 1988 .
[6] Kurt Wüthrich,et al. The second decade — into the third millenium , 1998, Nature Structural Biology.
[7] Daniel P. Weitekamp,et al. Parahydrogen and synthesis allow dramatically enhanced nuclear alignment , 1987 .
[8] J. Bargon,et al. Parahydrogen induced polarization , 1997 .
[9] E. Purcell,et al. Relaxation Effects in Nuclear Magnetic Resonance Absorption , 1948 .
[10] A. G. Redfield,et al. The Theory of Relaxation Processes , 1965 .
[11] T. Bull. ROESY relaxation theory , 1988 .
[12] D. Weitekamp,et al. Net NMR alignment by adiabatic transport of parahydrogen addition products to high magnetic field , 1988 .
[13] Anil Kumar,et al. Isotropic random field model for spin relaxation mechanisms in liquids , 1972 .
[14] Levitt,et al. Steady state in magnetic resonance pulse experiments. , 1992, Physical review letters.
[15] M. Levitt. Spin Dynamics: Basics of Nuclear Magnetic Resonance , 2001 .
[16] I. Solomon. Relaxation Processes in a System of Two Spins , 1955 .
[17] G. Bodenhausen,et al. Principles of nuclear magnetic resonance in one and two dimensions , 1987 .
[18] Marina Carravetta,et al. Long-lived nuclear spin states in high-field solution NMR. , 2004, Journal of the American Chemical Society.
[19] Hard,et al. The complete homogeneous master equation for a heteronuclear two-spin system in the basis of cartesian product operators , 1998, Journal of magnetic resonance.
[20] Bowers,et al. Transformation of symmetrization order to nuclear-spin magnetization by chemical reaction and nuclear magnetic resonance. , 1986, Physical review letters.
[21] Homogeneous versus inhomogeneous quantum-mechanical master equations , 1995 .
[22] G. Bodenhausen,et al. Quenching spin diffusion in selective measurements of transient overhauser effects in nuclear magnetic resonance. Applications to oligonucleotides , 1994 .
[23] Marina Carravetta,et al. Beyond the T1 limit: singlet nuclear spin states in low magnetic fields. , 2004, Physical review letters.
[24] K. Wüthrich. NMR of proteins and nucleic acids , 1988 .
[25] M. Goldman,et al. Interference effects in the relaxation of a pair of unlike spin-1/2 nuclei , 1984 .
[26] Richard R. Ernst,et al. Selective detection of multiple quantum transitions in NMR by two-dimensional spectroscopy , 1977 .
[27] M. Mehring,et al. Object-oriented magnetic resonance , 2001 .
[28] J. Cavanagh. Protein NMR Spectroscopy: Principles and Practice , 1995 .
[29] Perunthiruthy K. Madhu,et al. Cross-correlations in NMR , 2000 .
[30] Structure determination of a tetrasaccharide: transient nuclear Overhauser effects in the rotating frame , 1984 .
[31] J. Jeener. Superoperators in Magnetic Resonance , 1982 .
[32] S. Duckett,et al. More than INEPT: parahydrogen and INEPT + give unprecedented resonance enhancement to carbon-13 by direct proton polarization transfer , 1993 .