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H Harima

Publications and source records attributed to H Harima.

11 recordsLinked to original sources

Catastrophic Fermi surface reconstruction in the shape-memory alloy AuZn.

AuZn undergoes a shape-memory transition at 67 K. The de Haas-van Alphen effect persists to 100 K enabling the observation of a change in the quantum oscillation spectrum indicative of a catastrophic Fermi surface reconstruction at the transition. The coexistence of both Fermi surfaces at low temperatures suggests an intrinsic phase separation in the bulk of the material. In addition, Dingle analysis reveals a sharp change in the scattering mechanism at a threshold cyclotron radius, attributable to the underlying microstructure driving the shape-memory effect.

Journal Article↗

Mutual experimental and theoretical validation of bulk photoemission spectra of Sr1-xCaxVO3.

We report high-resolution high-energy photoemission spectra together with parameter-free LDA + DMFT (local density approximation + dynamical mean-field theory) results for Sr1-xCaxVO3, a prototype 3d(1) system. In contrast to earlier investigations the bulk spectra are found to be insensitive to x. The good agreement between experiment and theory confirms the bulk sensitivity of the high-energy photoemission spectra.

Journal Article↗

Definitive experimental evidence for two-band superconductivity in MgB2.

The superconducting-gap of MgB2 has been studied by high-resolution angle-resolved photoemission spectroscopy. The results show that superconducting gaps with values of 5.5 and 2.2 meV open on the sigma band and the pi band, respectively, but both the gaps close at the bulk transition temperature, providing a definitive experimental evidence for the two-band superconductivity with strong interband pairing interaction in MgB2. The experiments validate the role of k-dependent electron-phonon coupling as the origin of multiple-gap superconductivity as well as the high transition temperature of MgB2.

Journal Article↗

High-temperature ferromagnetism in CaB2C2.

We report a high Curie-temperature ferromagnet, CaB2C2. Although the compound has neither transition metal nor rare earth ions, the ferromagnetic transition temperature Tc is about 770 Kelvin. Despite this high T(c), the magnitude of the ordered moment at room temperatures is on the order of 10(-4) Bohr magneton per formula unit. These properties are rather similar to those of doped divalent hexaborides, such as Ca(1-x)La(x)B6. The calculated electronic states also show similarity near the Fermi level between CaB2C2 and divalent hexaborides. However, there is an important difference: CaB2C2 crystallizes in a tetragonal structure, and there are no equivalent pockets in the energy bands for electrons and holes-in contrast with CaB6. Thus, the disputed threefold degeneracy, specific to the cubic structure, in the energy bands of divalent hexaborides turns out not to be essential for high-temperature ferromagnetism. It is the peculiar molecular orbitals near the Fermi level that appear to be crucial to the high-Tc ferromagnetism.

Journal Article↗

Influences of some low molecular compounds on enzymatic activity and isoelectric point of aspartate aminotransferase from rat liver.

The substances responsible for regulating cytosolic aspartate aminotransferase (AspATc) activity in the cytosolic fraction of rat liver were examined. AspATc was removed from the cytosolic fraction by passing the fraction through an affinity column to which anti-AspATc antiserum was conjugated. The unbound fraction from the column was found to decrease the activity of the purified AspATc. A fraction containing compounds of less than MW 1,000 was obtained by filtering the cytosolic fraction through a YM 2 membrane. This YM 2 filtrate decreased the activity of the purified enzyme; however, the enzymic activity was protected partially by the addition of 2-oxoglutarate or pyridoxal phosphate (PLP). The YM 2 filtrate also decreased the isoelectric points (pIs) of the purified enzyme. Influences of glucose and fructose on AspATc were examined, and fructose was found to decrease the enzymic activity and the pIs. Fructose was more effective on apoenzyme than holoenzyme, suggesting that fructose may bind to the Lys258 residue of AspATc which is the binding site of PLP. The effects of various amino acids including substrates on the enzymic activity were also examined. Some amino acids were found to decrease the enzymic activity to various extents, though the pIs were unaltered. These results suggest that under physiological conditions, AspATc activity is modified by various low molecular substances in various ways.

Amino Acids↗

Increase in negative charge of cytosolic aspartate aminotransferase in vitamin B6 deficiency and during incubation.

Several subforms of cytosolic aspartate aminotransferase (AspATc) in the crude extracts of rat liver and kidney were separated by isoelectric focusing using immunoblotting and staining of activity to detect the enzyme protein and activity, respectively. Vitamin B6-deficiency resulted in decrease in the subforms with higher isoelectric points and increase in those with lower ones both in the liver and in the kidney. When pyridoxal phosphate was added to those preparations from vitamin B6-deficient rats, the isoelectric focusing pattern of kidney was recovered to the similar one to that of the controls. However, the liver preparation was affected only partially by the addition of PLP. The pattern of subforms was altered during in vitro incubation at 37 degrees C for 24 h in both liver and kidney preparations, and their patterns were very similar to that of liver preparation from VB6-deficient rats. The enzyme activity also decreased during this incubation, especially in preparations of the enzyme from the liver of vitamin B6-deficient rats. This loss of enzyme activity was not affected by addition of PLP alone, but was almost completely prevented by addition of substrate. The inactivation was recovered by addition of substrate and pyridoxal phosphate simultaneously. This finding suggests that the inactivation may be related with a conformational change around the catalytic site of the AspATc molecule.

Animals↗