The effect of equilibrium shear flow on the structure of out-of-plane magnetic field is analytically investigated in the two-fluid magnetohydrodynamic (MHD) regimes of the collisionless tearing instability, where the electron inertia breaks the frozen-in condition. Our scaling analysis reveals that the Alfvenic and sub-Alfvenic shear flows cannot significantly modify the linear regimes of applicability. In addition, we show that the structure of out-of-plane magnetic field can either be quadrupolar or non-quadrupolar in Hall-MHD regimes. In particular, both types of structures can dominate at beta < 1 (beta is the ratio of plasma kinetic pressure to the pressure in the magnetic field) depending on the value of the normalized ion inertial skin depth. This conclusion, however, is in contradiction to the claim presented by Rogers et al. [J. Geophys. Res. 108, A3 (2003)], which states that the quadrupolar structure cannot appear at beta < 1. The reasons of this disagreement are discussed in our study. (C) 2013 AIP Publishing LLC.
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Los Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USALos Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USA
Wan, Weigang
Lapenta, Giovanni
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Los Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USA
Katholieke Univ Leuven, Dept Wiskunde, Ctr Plasma Astrofys, B-3001 Louvain, BelgiumLos Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USA
Lapenta, Giovanni
Delzanno, Gian Luca
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Los Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USALos Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USA
Delzanno, Gian Luca
Egedal, Jan
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MIT, Plasma Sci & Fus Ctr, Cambridge, MA 02139 USALos Alamos Natl Lab, Plasma Theory Grp, Los Alamos, NM 87545 USA