4.8 Article

Anisotropic Third-Moment Estimates of the Energy Cascade in Solar Wind Turbulence Using Multispacecraft Data

期刊

PHYSICAL REVIEW LETTERS
卷 107, 期 16, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.107.165001

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资金

  1. NASA [NNX09AG31G, NNX08AI47G]
  2. NSF SHINE [ATM-0752135]
  3. UBACyT [X425, PIP-2009-00825 (CONICET)]
  4. ANPCyT [PICT 2007-00856]
  5. NASA [118347, NNX09AG31G] Funding Source: Federal RePORTER

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The first direct determination of the inertial range energy cascade rate, using an anisotropic form of Yaglom's law for magnetohydrodynamic turbulence, is obtained in the solar wind with multispacecraft measurements. The two-point mixed third-order structure functions of Elsasser fluctuations are integrated over a sphere in magnetic field-aligned coordinates, and the result is consistent with a linear scaling. Therefore, volume integrated heating and cascade rates are obtained that, unlike previous studies, make only limited assumptions about the underlying spectral geometry of solar wind turbulence. These results confirm the turbulent nature of magnetic and velocity field fluctuations in the low frequency limit, and could supply the energy necessary to account for the nonadiabatic heating of the solar wind.

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