We review some of the assumptions made in the use of muon spin rotation in superconductors: i.e. that the muons are implanted at random positions in the flux lattice, remain static after implantation and do not appreciably affect the properties of the surrounding superconductor; also that the flux lines are straight and static, and that the observed muon rotation frequency spectrum reflects the microscopic distribution of field values. We shall show how evidence for and against the truth of these assumptions in particular cases may be obtained from the μSR results themselves or by comparison with other measurements, and how this in turn may lead to deeper understanding of flux line structure and motion in superconductors.</p
Muon-spin rotation (μSR) measurements have been used to study the vortex lattice and its instabiliti...
It has long been known that a type-ll superconductor (a class which includes high-T_c materials) all...
We report muon spin rotation studies of the magnetic field distribution n(B) in the vortex state of ...
We review some of the assumptions made in the use of muon spin rotation in superconductors: i.e. tha...
We review some of the properties of the vortex lattice in type II superconductors and the use of muo...
Muon spin rotation (mu SR) studies of the vortex lattice in the superconductor kappa-(BEDT-TTF)(2)Cu...
Muon spin rotation (mu SR) studies of the vortex lattice in the superconductor kappa-(BEDT-TTF)(2)Cu...
We present a detailed study of vortex motion in a type-II superconductor using the muon spin rotatio...
A review of the muon spin rotation studies on high temperature superconductors is presented, with th...
A short review is presented of the application of the muon-spin rotation (µ+SR) technique to the inv...
We report transverse-field (TF) muon spin rotation experiments on single crystals of the topological...
The effect of the magnetic field inhomogeneity in the mixed state of isotropic and anisotropic type ...
The muon spin rotation/relaxation technique was found to be an exceptionally effective means of meas...
Muon Spin Rotation/Relaxation ($mu$SR) is an experimental technique widely used to probe magnetism i...
Muon spin rotation (μSR) measurements have been performed on the organic superconductor κ-(BEDT-TTF)...
Muon-spin rotation (μSR) measurements have been used to study the vortex lattice and its instabiliti...
It has long been known that a type-ll superconductor (a class which includes high-T_c materials) all...
We report muon spin rotation studies of the magnetic field distribution n(B) in the vortex state of ...
We review some of the assumptions made in the use of muon spin rotation in superconductors: i.e. tha...
We review some of the properties of the vortex lattice in type II superconductors and the use of muo...
Muon spin rotation (mu SR) studies of the vortex lattice in the superconductor kappa-(BEDT-TTF)(2)Cu...
Muon spin rotation (mu SR) studies of the vortex lattice in the superconductor kappa-(BEDT-TTF)(2)Cu...
We present a detailed study of vortex motion in a type-II superconductor using the muon spin rotatio...
A review of the muon spin rotation studies on high temperature superconductors is presented, with th...
A short review is presented of the application of the muon-spin rotation (µ+SR) technique to the inv...
We report transverse-field (TF) muon spin rotation experiments on single crystals of the topological...
The effect of the magnetic field inhomogeneity in the mixed state of isotropic and anisotropic type ...
The muon spin rotation/relaxation technique was found to be an exceptionally effective means of meas...
Muon Spin Rotation/Relaxation ($mu$SR) is an experimental technique widely used to probe magnetism i...
Muon spin rotation (μSR) measurements have been performed on the organic superconductor κ-(BEDT-TTF)...
Muon-spin rotation (μSR) measurements have been used to study the vortex lattice and its instabiliti...
It has long been known that a type-ll superconductor (a class which includes high-T_c materials) all...
We report muon spin rotation studies of the magnetic field distribution n(B) in the vortex state of ...