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RAPID ACCELERATION OF THE POLAR SOLAR WIND

机译:快速加速北极风

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THE solar wind is a supersonic outflow of coronal plasma into interplanetary space, and is the agent that carries solar disturbances to the Earth. Direct measurements of the wind speed over a range of distances-from the orbit of Mercury(1) to beyond the outermost planets(2) and now over the solar poles(3)-show that the acceleration is largely complete by 70 solar radii (R(.)). But there are no direct measurements nearer the Sun with which to constrain theoretical models of the acceleration. In principle, the speed of the solar wind in the acceleration region can be inferred by indirect methods such as radio scattering, but this is not straightforward as these data provide a measure of the wind properties integrated along the lines of sight. Here we report radio-scattering measurements of the speed of the south polar stream which have been corrected for this path integration, and also for the potential bias due to the presence of plasma waves. Our results indicate that the acceleration of the polar wind is almost complete by 10 R(.), much closer to the Sun than had been expected(4). This suggests that the acceleration of the sofar wind and the heating of the solar corona occur in essentially the same region, and thus that the underlying mechanisms may be strongly linked(5). [References: 25]
机译:太阳风是日冕等离子体的超音速流出到行星际空间,并且是将太阳干扰带到地球的媒介。在从汞的轨道(1)到最外面的行星(2)以及现在的太阳极(3)的距离范围内的风速直接测量结果表明,加速度在很大程度上由70个太阳半径( R(。))。但是,在太阳附近没有直接测量可以用来约束加速度的理论模型。原则上,可以通过间接方法(例如无线电散射)来推断加速区域中的太阳风的速度,但这并不简单,因为这些数据提供了沿视线积分的风属性的量度。在这里,我们报告了南极气流速度的无线电散射测量结果,该测量结果已针对该路径积分以及由于等离子波的存在而引起的潜在偏差进行了校正。我们的结果表明,极风的加速度几乎完成了10 R(。),比预期的更接近太阳(4)。这表明沙发风的加速和太阳日冕的加热基本上发生在同一区域,因此潜在的机制可能是紧密联系的(5)。 [参考:25]

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