Nuclear spin polarization and relaxation can be studied using nuclear magnetic resonance (NMR). Here the authors demonstrate a combination of fast-field cycling and optical magnetometry techniques, to realize a NMR sensor that operates in the region of very low frequency and high relaxation rate
Abstract Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules....
The phenomenon of Nuclear Spin Optical Rotation (NSOR) is a member of the nuclear magneto-optic effe...
At ultralow temperatures, longitudinal nuclear magnetic relaxation times become exceedingly long and...
International audienceThe dependence of the nuclear magnetic resonance relaxation rate on the magnet...
We present the architecture of the versatile nuclear magnetic resonance (NMR) spectrometer with soft...
International audienceThe dependence of the nuclear magnetic resonance relaxation rate on the magnet...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
At ultralow temperatures, longitudinal nuclear magnetic relaxation times become exceedingly long and...
Magnetic resonance relaxometry, conducted by measuring relaxation parameters at different field stre...
Nuclear magnetic resonance (NMR) is a powerful chemometric method for any scientist because it is ea...
Nuclear magnetic resonance (NMR) is a powerful chemometric method for any scientist because it is ea...
The spin-lattice (T1) relaxation rates of materials depend on the strength of the external magnetic ...
High-field magnets of up to tens of teslas in strength advance applications in physics, chemistry an...
Abstract Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules....
The phenomenon of Nuclear Spin Optical Rotation (NSOR) is a member of the nuclear magneto-optic effe...
At ultralow temperatures, longitudinal nuclear magnetic relaxation times become exceedingly long and...
International audienceThe dependence of the nuclear magnetic resonance relaxation rate on the magnet...
We present the architecture of the versatile nuclear magnetic resonance (NMR) spectrometer with soft...
International audienceThe dependence of the nuclear magnetic resonance relaxation rate on the magnet...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
This chapter deals with detection of NMR signals in the ultra-low-field (ULF) regime, by means of o...
At ultralow temperatures, longitudinal nuclear magnetic relaxation times become exceedingly long and...
Magnetic resonance relaxometry, conducted by measuring relaxation parameters at different field stre...
Nuclear magnetic resonance (NMR) is a powerful chemometric method for any scientist because it is ea...
Nuclear magnetic resonance (NMR) is a powerful chemometric method for any scientist because it is ea...
The spin-lattice (T1) relaxation rates of materials depend on the strength of the external magnetic ...
High-field magnets of up to tens of teslas in strength advance applications in physics, chemistry an...
Abstract Laplace NMR (LNMR) offers deep insights on diffusional and rotational motion of molecules....
The phenomenon of Nuclear Spin Optical Rotation (NSOR) is a member of the nuclear magneto-optic effe...
At ultralow temperatures, longitudinal nuclear magnetic relaxation times become exceedingly long and...