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Nuclear Magnetic Resonance (NMR) spans diverse fields from biology to quantum science. Employing NMR on a floating object could unveil novel possibilities beyond conventional operational paradigms. Here, we observe Nuclear Magnetic…

Quantum Physics · Physics 2024-07-30 J. Voisin , A. Durand , T. Copie , M. Perdriat , G. Hétet

Sensing of signals from biological processes, such as action potential propagation in nerves, are essential for clinical diagnosis and basic understanding of physiology. Sensing can be performed electrically by placing sensor probes near or…

A cryogenic apparatus is described that enables a new experiment, nEDM@SNS, with a major improvement in sensitivity compared to the existing limit in the search for a neutron Electric Dipole Moment (EDM). It uses superfluid $^4$He to…

Nuclear matrix elements (NMEs) for neutrinoless double-beta ($0\nu\beta\beta$) decay in candidate nuclei play a crucial role in interpreting results from current experiments and in designing future ones. Accurate NME values serve as…

Nuclear Theory · Physics 2024-08-08 C. R. Ding , Gang Li , J. M. Yao

The NEMO 3 experiment is located in the Modane Underground Laboratory and has been taking data since 2003 with seven isotopes. It is searching for the double beta decay process with two or zero neutrinos emitted in the final state.…

High Energy Physics - Experiment · Physics 2019-08-14 R. L. Flack

Searches of new physics beyond the Standard Model (SM) performed at low energy frontiers are complementary to experiments carried out at high energy colliders. Among the methods for testing the SM and beyond at low energies are the…

Instrumentation and Detectors · Physics 2018-10-08 D. Rozpedzik , K. Bodek , K. Lojek , M. Perkowski , L. De Keukeleere , L. Hayen , N. Severijns , A. Kozela

The MONUMENT experiment measures ordinary muon capture (OMC) on isotopes relevant for neutrinoless double-beta (0$\nu\beta\beta$) decay and nuclear astrophysics. OMC is a particularly attractive tool for improving the theoretical…

Local detection of magnetic fields is crucial for characterizing nano- and micro-materials and has been implemented using various scanning techniques or even diamond quantum sensors. Diamond nanoparticles (nanodiamonds) offer an attractive…

Quantum Physics · Physics 2022-09-09 Moeta Tsukamoto , Shuji Ito , Kensuke Ogawa , Yuto Ashida , Kento Sasaki , Kensuke Kobayashi

Nuclear Magnetic Resonance (NMR) spectroscopy is particularly well-suited to determine the structure of molecules and materials in powdered form. Structure determination usually proceeds by finding the best match between experimentally…

The nitrogen-vacancy (NV) center has enabled widespread study of nanoscale nuclear magnetic resonance (NMR) spectroscopy at low magnetic fields. NMR spectroscopy at high magnetic fields significantly improves the technique's spectral…

Mesoscale and Nanoscale Physics · Physics 2021-09-15 Benjamin Fortman , Laura Mugica-Sanchez , Noah Tischler , Cooper Selco , Yuxiao Hang , Karoly Holczer , Susumu Takahashi

Non-invasive measurement of absolute temperature is important for proper characterization of various pathologies and for evaluation of thermal dose during interventional procedures. The proton magnetic resonance (MR) frequency shift method…

Medical Physics · Physics 2019-05-31 Emilia Silletta , Alexej Jerschow , Guillaume Madelin , Leeor Alon

AMoRE searches for the signature of neutrinoless double beta decay of $^{100}$Mo with a 100 kg sample of enriched $^{100}$Mo. Scintillating molybdate crystals coupled with a metallic magnetic calorimeter operate at milli-Kelvin temperatures…

Nuclear Magnetic Resonance (NMR) spectrometry uses electro-frequency pulses to probe the resonance of a compound's nucleus, which is then analyzed to determine its structure. The acquisition time of high-resolution NMR spectra remains a…

Precision measurements of observables in neutron $\beta$-decay are used to test the Standard Model description of the weak interaction and search for evidence of new physics. The Nab experiment at the Fundamental Neutron Physics Beamline at…

Nuclear Experiment · Physics 2026-03-12 Francisco M. Gonzalez , Jin Ha Choi , Himal Acharya , Skylar Clymer , Andrew Hagemeier , David G. Mathews , August Mendelsohn , Austin Nelsen , Hitesh Rahangdale , Love Richburg , Ricardo Alarcon , Ariella Atencio , Stefan Baeßler , Thomas Bailey , Noah Birge , Dennis Borissenko , Michael Bowler , Leah J. Broussard , Albert T. Bryant , Jimmy Caylor , Tim Chupp , Christopher Crawford , R. Alston Croley , Micah Cruz , George Dodson , Wenjiang Fan , Deion Fellers , Nadia Fomin , Emil Frlež , Matthew Frost , Jason Fry , Duncan Fuehne , Michael T. Gericke , Michelle Gervais , Corey Gilbert , Ferenc Glück , Rebecca Godri , Geoff L. Greene , William Greene , Josh Hamblen , Paul Harmston , Leendert Hayen , Carter Hedinger , Chelsea Hendrus , Sean Hollander , Kavish Imam , Erik B. Iverson , Aaron Jezghani , Chenyang Jiang , Huangxing Li , Nick Macsai , Mark Makela , Russell Mammei , Ricky Marshall , Madelyn Martinez , Mark McCrea , Pat McGaughey , Sean McGovern , David McLaughlin , Jacqueline Mirabal-Martinez , Paul Mueller , Andrew Mullins , William Musk , Jordan O'Kronley , Seppo I. Penttilä , D. Elliot Perryman , Josh Pierce , Jason A. Pioquinto , Dinko Počanić , Hunter Presley , John Ramsey , Glenn Randall , Zachary Raney , Jackson Ricketts , Grant Riley , Americo Salas-Bacci , Sepehr Samiei , Alexander Saunders , Wolfgang Schreyer , E. Mae Scott , Thomas Shelton , Aryaman Singh , Alexander Smith , Erick Smith , Eric Stevens , R. J. Taylor , Leonard Tinius , Isaiah Wallace , Jonathan Wexler , W. Scott Wilburn , A. R. Young , B. Zeck

We present high-pressure (2 GPa) $^7$Li nuclear magnetic resonance (NMR) measurements on single crystals of the hyper-honeycomb Kitaev magnet $\beta$-Li$_2$IrO$_3$. The spectra show evidence for a structural phase transition around 200 K…

Strongly Correlated Electrons · Physics 2025-12-16 Aimé Verrier , Vikram Nagarajan , Louis-Thomas Gendron , James G. Analytis , Jeffrey A. Quilliam

We introduce a novel NMR approach that extends the capabilities of indirect dynamic nuclear polarization (DNP) under magic-angle spinning to probe the local environment of half-integer spin quadrupolar nuclei. Compared to…

The drive to improve the sensitivity of nuclear magnetic resonance (NMR) to smaller and smaller sample volumes has led to the development of a variety of techniques distinct from conventional inductive detection. In this chapter, we focus…

Mesoscale and Nanoscale Physics · Physics 2021-10-26 M. Poggio , B. E. Herzog

The observation of neutrinoless double-beta ($0\nu\beta\beta$) decay would offer proof of lepton number violation, demonstrating that neutrinos are Majorana particles, while also helping us understand why there is more matter than…

Magnetic materials generate demagnetizing field that depends on geometry of the sample and results in a shift of magnetic resonance frequency. This phenomenon should occur in porous nanostructures as well, e.g., in globally anisotropic…

Other Condensed Matter · Physics 2019-03-27 V. V. Dmitriev , M. S. Kutuzov , A. A. Soldatov , A. N. Yudin

Significant systematic errors in high-precision Penning trap mass spectrometry can result from electric and magnetic field imperfections. An experimental procedure to minimize these uncertainties is presented for the on-line Penning trap…

Instrumentation and Detectors · Physics 2009-01-16 D. Beck , K. Blaum , G. Bollen , P. Delahaye , S. George , C. Guenaut , F. Herfurth , A. Herlert , D. Lunney , L. Schweikhard , C. Yazidjian