Physics – Condensed Matter – Strongly Correlated Electrons
Scientific paper
2011-03-23
Physics
Condensed Matter
Strongly Correlated Electrons
38 pages including 10 figures, 70 references
Scientific paper
The angular, temperature and magnetic field dependences of Hall resistance roH for the rare-earth dodecaboride solid solutions Tm1-xYbxB12 have been studied in a wide vicinity of the quantum critical point (QCP) xC~0.3. The measurements performed in the temperature range 1.9-300 K on high quality single crystals allowed to find out for the first time in these fcc compounds both an appearance of the second harmonic contribution in ro2H at QCP and its enhancement under the Tm to ytterbium substitution and/or with increase of external magnetic field. When the Yb concentration x increases a negative maximum of a significant amplitude was shown to appear on the temperature dependences of Hall coefficient RH(T) for the Tm1-xYbxB12 compounds. Moreover, a complicated activation type behavior of the Hall coefficient is observed at intermediate temperatures for x>0.5 with activation energies Eg~200K and Ea~55-75K in combination with the sign inversion of RH(T) at low temperatures in the coherent regime. The density of states renormalization effects are analyzed within the variation of Yb concentration and the features of the charge transport in various regimes (charge gap formation, intra-gap manybody resonance and coherent regime) are discussed in detail in Tm1-xYbxB12 solid solutions.
Azarevich A. N.
Bogach A. V.
Demishev S. V.
Filipov V. B.
Glushkov V. V.
No associations
LandOfFree
Hall effect in the vicinity of quantum critical point in Tm1-xYbxB12 does not yet have a rating. At this time, there are no reviews or comments for this scientific paper.
If you have personal experience with Hall effect in the vicinity of quantum critical point in Tm1-xYbxB12, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Hall effect in the vicinity of quantum critical point in Tm1-xYbxB12 will most certainly appreciate the feedback.
Profile ID: LFWR-SCP-O-441332