Blueprint for nanoscale NMR
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M. Plenio | F. Jelezko | Qiong Chen | L. McGuinness | S. Schmitt | I. Schwartz | J. Rosskopf | B. Tratzmiller | Joachim Rosskopf
[1] M. Lukin,et al. Hyperpolarization-Enhanced NMR Spectroscopy with Femtomole Sensitivity Using Quantum Defects in Diamond , 2018, Physical Review X.
[2] Gang-Qin Liu,et al. Quantum information processing with nitrogen–vacancy centers in diamond* , 2018 .
[3] M. Plenio,et al. Toward Hyperpolarization of Oil Molecules via Single Nitrogen Vacancy Centers in Diamond. , 2017, Nano letters.
[4] Ronald L. Walsworth,et al. High-resolution magnetic resonance spectroscopy using a solid-state spin sensor , 2017, Nature.
[5] M. Plenio,et al. Robust techniques for polarization and detection of nuclear spin ensembles , 2017, 1706.01315.
[6] David G. Cory,et al. Statistical inference with quantum measurements: methodologies for nitrogen vacancy centers in diamond , 2017, 1705.10897.
[7] Jan Meijer,et al. Submillihertz magnetic spectroscopy performed with a nanoscale quantum sensor , 2017, Science.
[8] C. Degen,et al. Quantum sensing with arbitrary frequency resolution , 2017, Science.
[9] Joseph Hilbe,et al. Bayesian Models for Astrophysical Data: Using R, JAGS, Python, and Stan , 2017 .
[10] G. Boero,et al. NMR spectroscopy of single sub-nL ova with inductive ultra-compact single-chip probes , 2017, Scientific Reports.
[11] H. Spiess. 50th Anniversary Perspective: The Importance of NMR Spectroscopy to Macromolecular Science , 2017 .
[12] Robert Powers,et al. The future of NMR-based metabolomics. , 2017, Current opinion in biotechnology.
[13] S. Brueck,et al. Solution nuclear magnetic resonance spectroscopy on a nanostructured diamond chip , 2017, Nature Communications.
[14] Martin B Plenio,et al. Diamond Quantum Devices in Biology. , 2016, Angewandte Chemie.
[15] John Salvatier,et al. Probabilistic programming in Python using PyMC3 , 2016, PeerJ Comput. Sci..
[16] M. Plenio,et al. Optically induced dynamic nuclear spin polarisation in diamond , 2016, 1601.05967.
[17] M. Plenio,et al. Resonance-inclined optical nuclear spin polarization of liquids in diamond structures , 2015, 1510.03256.
[18] M. Lukin,et al. NMR technique for determining the depth of shallow nitrogen-vacancy centers in diamond , 2015, 1508.04191.
[19] Jiangfeng Du,et al. Towards chemical structure resolution with nanoscale nuclear magnetic resonance spectroscopy , 2015, 1506.05882.
[20] A. Pines,et al. Room-temperature in situ nuclear spin hyperpolarization from optically pumped nitrogen vacancy centres in diamond , 2015, Nature Communications.
[21] Lucio Frydman,et al. Local and bulk 13C hyperpolarization in nitrogen-vacancy-centred diamonds at variable fields and orientations , 2014, Nature Communications.
[22] Bernhard Blümich,et al. Miniaturization of NMR systems: desktop spectrometers, microcoil spectroscopy, and "NMR on a chip" for chemistry, biochemistry, and industry. , 2014, Chemical reviews.
[23] D. Englund,et al. Dynamic nuclear spin polarization of liquids and gases in contact with nanostructured diamond. , 2014, Nano letters.
[24] R. Schirhagl,et al. Nitrogen-vacancy centers in diamond: nanoscale sensors for physics and biology. , 2014, Annual review of physical chemistry.
[25] Andrew Gelman,et al. The No-U-turn sampler: adaptively setting path lengths in Hamiltonian Monte Carlo , 2011, J. Mach. Learn. Res..
[26] S. Berger,et al. 50 and More Essential NMR Experiments: A Detailed Guide , 2013 .
[27] M. Plenio,et al. Detecting and polarizing nuclear spins with double resonance on a single electron spin. , 2013, Physical review letters.
[28] Neil B. Manson,et al. The nitrogen-vacancy colour centre in diamond , 2013, 1302.3288.
[29] J. Meijer,et al. Nuclear Magnetic Resonance Spectroscopy on a (5-Nanometer)3 Sample Volume , 2013, Science.
[30] J. Korvink,et al. Microscale nuclear magnetic resonance: a tool for soft matter research , 2012 .
[31] S. Duckett,et al. Application of parahydrogen induced polarization techniques in NMR spectroscopy and imaging. , 2012, Accounts of chemical research.
[32] J. Blanchard,et al. Zero-field NMR enhanced by parahydrogen in reversible exchange. , 2012, Journal of the American Chemical Society.
[33] P. Cochat,et al. Et al , 2008, Archives de pediatrie : organe officiel de la Societe francaise de pediatrie.
[34] Galin L. Jones,et al. Implementing MCMC: Estimating with Confidence , 2011 .
[35] D. Budker,et al. Parahydrogen-enhanced zero-field nuclear magnetic resonance , 2011, 1102.5378.
[36] Gabor A. Somorjai,et al. Impact of surface chemistry , 2010, Proceedings of the National Academy of Sciences.
[37] F. Feroz,et al. MultiNest: an efficient and robust Bayesian inference tool for cosmology and particle physics , 2008, 0809.3437.
[38] Alfred Leitenstorfer,et al. Nanoscale imaging magnetometry with diamond spins under ambient conditions , 2008, Nature.
[39] Jacob M. Taylor,et al. Nanoscale magnetic sensing with an individual electronic spin in diamond , 2008, Nature.
[40] D Budker,et al. Zero-field remote detection of NMR with a microfabricated atomic magnetometer , 2008, Proceedings of the National Academy of Sciences.
[41] Matthew Sellars,et al. Nitrogen-vacancy center in diamond: Model of the electronic structure and associated dynamics , 2006 .
[42] P. Hemmer,et al. Room-temperature coherent coupling of single spins in diamond , 2006, quant-ph/0605038.
[43] N. Manson,et al. The nitrogen-vacancy center in diamond re-visited , 2006, cond-mat/0601360.
[44] J. Ardenkjær-Larsen,et al. Increase in signal-to-noise ratio of > 10,000 times in liquid-state NMR , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[45] Robert McDermott,et al. Liquid-State NMR and Scalar Couplings in Microtesla Magnetic Fields , 2002, Science.
[46] Andrew G. Webb,et al. Radiofrequency microcoils in magnetic resonance , 1997 .
[47] J. Wrachtrup,et al. Scanning confocal optical microscopy and magnetic resonance on single defect centers , 1997 .
[48] Alan S. Stern,et al. NMR Data Processing , 1996 .
[49] P C Lauterbur,et al. Design and analysis of microcoils for NMR microscopy. , 1995, Journal of magnetic resonance. Series B.
[50] J. Wrachtrup,et al. Optical detection of magnetic resonance in a single molecule , 1993, Nature.
[51] van Oort E,et al. Low-field optically detected magnetic resonance of a coupled triplet-doublet defect pair in diamond. , 1990, Physical review. B, Condensed matter.
[52] D G Altman,et al. Estimating with confidence , 1988, British medical journal.
[53] Marvin H. J. Guber. Bayesian Spectrum Analysis and Parameter Estimation , 1988 .