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Review and Prospect: NMR Spectroscopy Denoising & Reconstruction with Low Rank Hankel Matrices and Tensors

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arxiv 2007.12646 v1 pith:NGQC65TJ submitted 2020-07-16 physics.chem-ph eess.SPmath.SPphysics.bio-phphysics.med-ph

classification physics.chem-pheess.SPmath.SPphysics.bio-phphysics.med-ph
keywords spectroscopyacquisitiondenoisinghankelrankreconstructionreviewaccelerating
verification ladder T0 review T1 audit T2 compute T3 formal
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Nuclear Magnetic Resonance (NMR) spectroscopy is an important analytical tool in chemistry, biology, and life science, but it suffers from relatively low sensitivity and long acquisition time. Thus, improving the apparent signal-to-noise ratio and accelerating data acquisition become indispensable. In this review, we summarize the recent progress on low rank Hankel matrix and tensor methods, that exploit the exponential property of free induction decay signals, to enable effective denoising and spectra reconstruction. We also outline future developments that are likely to make NMR spectroscopy a far more powerful technique.

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