Parahydrogen-Induced Radio Amplification by Stimulated Emission of Radiation |
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Authors: | Dr. Baptiste Joalland Nuwandi M. Ariyasingha Dr. Sören Lehmkuhl Prof. Thomas Theis Prof. Stephan Appelt Prof. Eduard Y. Chekmenev |
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Affiliation: | 1. Department of Chemistry, Integrative Biosciences (Ibio), Karmanos Cancer Institute (KCI), Wayne State University, Detroit, MI, 48202 USA;2. Department of Chemistry, North Carolina State University, Raleigh, NC, 27695-8204 USA;3. Institut für Technische und Makromolekulare Chemie (ITMC), RWTH Aachen University, 52056 Aachen, Germany |
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Abstract: | Radio amplification by stimulated emission of radiation (RASER) was recently discovered in a low-field NMR spectrometer incorporating a highly specialized radio-frequency resonator, where a high degree of proton-spin polarization was achieved by reversible parahydrogen exchange. RASER activity, which results from the coherent coupling between the nuclear spins and the inductive detector, can overcome the limits of frequency resolution in NMR. Here we show that this phenomenon is not limited to low magnetic fields or the use of resonators with high-quality factors. We use a commercial bench-top 1.4 T NMR spectrometer in conjunction with pairwise parahydrogen addition producing proton-hyperpolarized molecules in the Earth's magnetic field (ALTADENA condition) or in a high magnetic field (PASADENA condition) to induce RASER without any radio-frequency excitation pulses. The results demonstrate that RASER activity can be observed on virtually any NMR spectrometer and measures most of the important NMR parameters with high precision. |
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Keywords: | Hyperpolarisation NMR-Spektroskopie Parawasserstoff PHIP RASER |
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