10,059 research outputs found
Effective Theory For Quantum Spin System In Low Dimension - Beyond Long-Wavelength Limit
An effective theory for quantum spin system in low dimension is constructed
in the finite-q regime. It is shown that there are field configurations for
which Wess-Zumino term contributes to the partition functions as topological
term for ferromagnet as well as antiferromagnet in both one and two dimensional
lattice,in contrast to the long wave length regime.Comment: 8 pages (Latex), no figure
Fractional Quantum Hall Effect States as Exact Ground States
We construct many particle Hamiltonians for which the Laughlin and Jain
wavefunctions are exact ground states. The Hamiltonians involve fermions in a
magnetic field and with inter-particle interactions. For the Laughlin
wave-functions,the interactions involve two- and three-body correlations
similar to the Chern-Simons interactions, whereas for the projected Jain
wave-functions, N-body interactions (which cannot be explicitly written down in
general) are involved.Comment: Several changes, particularly in interpretatio
Physical realization and possible identification of topological excitations in quantum Heisenberg anti-ferromagnet on a two dimensional lattice
Physical spin configurations corresponding to topological excitations,
expected to be present in the XY limit of a quantum spin 1/2 Heisenberg
anti-ferromagnet, are probed on a two dimensional square lattice . Quantum
vortices (anti-vortices) are constructed in terms of coherent staggered spin
field components, as limiting case of meronic (anti-meronic) configurations .
The crucial role of the associated Wess-Zumino-like (WZ-like) term is
highlighted in our procedure . The time evolution equation of coherent spin
fields used in this analysis is obtained by applying variational principle on
the quantum Euclidean action corresponding to the Heisenberg anti-ferromagnet
on lattice . It is shown that the WZ-like term can distinguish between vortices
and anti-vortices only in a charge sector with odd topological charges. Our
formalism is distinctly different from the conventional approach for the
construction of quantum vortices (anti-vortices) .Comment: 21 pages, 5 figures, laTe
Extra-matrix Mg\u3csup\u3e2+\u3c/sup\u3e Limits Ca\u3csup\u3e2+\u3c/sup\u3e Uptake and Modulates Ca\u3csup\u3e2+\u3c/sup\u3e Uptake-independent Respiration and Redox State in Cardiac Isolated Mitochondria
Cardiac mitochondrial matrix (m) free Ca2+ ([Ca2+]m) increases primarily by Ca2+ uptake through the Ca2+ uniporter (CU). Ca2+ uptake via the CU is attenuated by extra-matrix (e) Mg2+ ([Mg2+]e). How [Ca2+]m is dynamically modulated by interacting physiological levels of [Ca2+]e and [Mg2+]e and how this interaction alters bioenergetics are not well understood. We postulated that as [Mg2+]e modulates Ca2+ uptake via the CU, it also alters bioenergetics in a matrix Ca2+–induced and matrix Ca2+–independent manner. To test this, we measured changes in [Ca2+]e, [Ca2+]m, [Mg2+]e and [Mg2+]m spectrofluorometrically in guinea pig cardiac mitochondria in response to added CaCl2 (0–0.6 mM; 1 mM EGTA buffer) with/without added MgCl2 (0–2 mM). In parallel, we assessed effects of added CaCl2 and MgCl2 on NADH, membrane potential (ΔΨm), and respiration. We found that \u3e0.125 mM MgCl2 significantly attenuated CU-mediated Ca2+ uptake and [Ca2+]m. Incremental [Mg2+]e did not reduce initial Ca2+uptake but attenuated the subsequent slower Ca2+ uptake, so that [Ca2+]m remained unaltered over time. Adding CaCl2 without MgCl2 to attain a [Ca2+]m from 46 to 221 nM enhanced state 3 NADH oxidation and increased respiration by 15 %; up to 868 nM [Ca2+]m did not additionally enhance NADH oxidation or respiration. Adding MgCl2 did not increase [Mg2+]m but it altered bioenergetics by its direct effect to decrease Ca2+ uptake. However, at a given [Ca2+]m, state 3 respiration was incrementally attenuated, and state 4 respiration enhanced, by higher [Mg2+]e. Thus, [Mg2+]e without a change in [Mg2+]m can modulate bioenergetics independently of CU-mediated Ca2+ transport
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