机构:
Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, AustriaJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Poeschko, Maria Theresia
[1
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Schlagnitweit, Judith
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机构:
Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, AustriaJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Schlagnitweit, Judith
[1
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Huber, Gaspard
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机构:
CEA Saclay, Lab Struct & Dynam Resonance Magnet, SIS2M UMR CEA CNRS 3299, CEA,IRAMIS,NIMBE, F-91191 Gif Sur Yvette, FranceJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Huber, Gaspard
[2
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Nausner, Martin
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机构:
Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, AustriaJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Nausner, Martin
[1
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Hornicakova, Michaela
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Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, AustriaJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Hornicakova, Michaela
[1
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Desvaux, Herve
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CEA Saclay, Lab Struct & Dynam Resonance Magnet, SIS2M UMR CEA CNRS 3299, CEA,IRAMIS,NIMBE, F-91191 Gif Sur Yvette, FranceJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Desvaux, Herve
[2
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Mueller, Norbert
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Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, AustriaJohannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
Mueller, Norbert
[1
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机构:
[1] Johannes Kepler Univ Linz, Inst Organ Chem, A-4040 Linz, Austria
[2] CEA Saclay, Lab Struct & Dynam Resonance Magnet, SIS2M UMR CEA CNRS 3299, CEA,IRAMIS,NIMBE, F-91191 Gif Sur Yvette, France
Three optimum conditions for the tuning of NMR probes are compared: the conventional tuning optimum, which is based on radio-frequency pulse efficiency, the spin noise tuning optimum based on the line shape of the spin noise signal, and the newly introduced frequency shift tuning optimum, which minimizes the frequency pushing effect on strong signals. The latter results if the radiation damping feedback field is not in perfect quadrature to the precessing magnetization. According to the conventional RLC (resistor-inductor-capacitor) resonant circuit model, the optima should be identical, but significant deviations are found experimentally at low temperatures, in particular on cryogenically cooled probes. The existence of different optima with respect to frequency pushing and spin noise line shape has important consequences on the nonlinearity of spin dynamics at high polarization levels and the implementation of experiments on cold probes.