NMR in superfluid /sup 3/He in a confined geometry
Journal Article
·
· Phys. Rev. B: Condens. Matter; (United States)
NMR in superfluid /sup 3/He in a thin slab is studied in the Ginzburg-Landau regime. The predicted qualitative difference in response from the bulk case of both the A and B phases suggests that NMR can be a very sensitive experimental probe of the order parameter in severely confined geometries. We present numerical solutions for the NMR frequencies.
- Research Organization:
- Institute of Theoretical Physics, Physics Department, Stanford University, Stanford, California 94305
- OSTI ID:
- 5343517
- Journal Information:
- Phys. Rev. B: Condens. Matter; (United States), Journal Name: Phys. Rev. B: Condens. Matter; (United States) Vol. 37:10; ISSN PRBMD
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
640450* -- Fluid Physics-- Superfluidity
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
CONFINEMENT
DIFFERENTIAL EQUATIONS
EIGENVALUES
EQUATIONS
EVEN-ODD NUCLEI
GINZBURG-LANDAU THEORY
HELIUM 3
HELIUM ISOTOPES
ISOTOPES
LIGHT NUCLEI
MAGNETIC RESONANCE
NUCLEAR MAGNETIC RESONANCE
NUCLEI
NUMERICAL SOLUTION
ORDER PARAMETERS
PARTIAL DIFFERENTIAL EQUATIONS
RESONANCE
SCHROEDINGER EQUATION
SLABS
STABLE ISOTOPES
SUPERFLUIDITY
WAVE EQUATIONS
75 CONDENSED MATTER PHYSICS
SUPERCONDUCTIVITY AND SUPERFLUIDITY
CONFINEMENT
DIFFERENTIAL EQUATIONS
EIGENVALUES
EQUATIONS
EVEN-ODD NUCLEI
GINZBURG-LANDAU THEORY
HELIUM 3
HELIUM ISOTOPES
ISOTOPES
LIGHT NUCLEI
MAGNETIC RESONANCE
NUCLEAR MAGNETIC RESONANCE
NUCLEI
NUMERICAL SOLUTION
ORDER PARAMETERS
PARTIAL DIFFERENTIAL EQUATIONS
RESONANCE
SCHROEDINGER EQUATION
SLABS
STABLE ISOTOPES
SUPERFLUIDITY
WAVE EQUATIONS