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Methods of Ex Situ and In Situ Investigations of Structural Transformations: The Case of Crystallization of Metallic Glasses
Published on: June 7, 2018
&mgr;(+) knight shift measurements in U0.965Th0.035Be13 single crystals
1Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Physical Review Letters
|September 16, 2000
Summary
Muon spin rotation (μSR) reveals changes in static spin susceptibility (χ(s)) in U0.965Th0.035Be13 below transition temperatures. An anomalous anisotropic temperature dependence of hyperfine coupling was observed in the normal state.
Area of Science:
- Condensed matter physics
- Materials science
- Quantum magnetism
Background:
- Understanding the electronic and magnetic properties of heavy fermion compounds like U0.965Th0.035Be13 is crucial.
- Previous studies suggest complex magnetic ordering and electronic behavior in these materials.
Purpose of the Study:
- To investigate the static spin susceptibility (χ(s)) in U0.965Th0.035Be13 single crystals.
- To explore the temperature dependence of magnetic interactions below the transition temperatures T(c1) and T(c2).
- To analyze the normal-state hyperfine coupling between muon spin and U 5f electrons.
Main Methods:
- Muon spin rotation (μSR) spectroscopy was employed.
- Measurements focused on the temperature dependence of the μ(+) Knight shift.
Main Results:
- An abrupt reduction in static spin susceptibility (χ(s)) was observed below T(c1).
- χ(s) remained constant below T(c2), at a value lower than the normal-state susceptibility (χ(n)).
- An anomalous anisotropic temperature dependence of the transferred hyperfine coupling was found in the normal state.
Conclusions:
- The study provides insights into the magnetic phases and spin dynamics of U0.965Th0.035Be13.
- The observed behavior of χ(s) suggests distinct magnetic transitions at T(c1) and T(c2).
- The anomalous hyperfine coupling indicates complex interactions involving U 5f electrons in the normal state.

