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Particle and field measurements of the Starfish diamagnetic cavity

机译:海星的粒子和实地测量抗磁性腔

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Recently analyzed beta particle and magnetic field measurements obtained from five instrumented rocket payloads located around the 1962 Starfish nuclear burst are used to describe the diamagnetic cavity produced in the geomagnetic field. Three of the payloads were located in the cavity during its expansion and collapse, one payload was below, and the fifth was above the fully expanded cavity. This multipoint data set shows that the cavity expanded into an elongated shape 1840 km along the magnetic field lines and 680 km vertically across in 1.2 s and required an unexpectedly long time of about 16 s to collapse. The beta flux contained inside the cavity was measured to be relatively uniform throughout and remained at 3 × 1011 beta/cm2 s for at least 7 s. The plasma continued to expand upward beyond the fully expanded cavity boundary and injected a flux measuring 2.5 × 1010 beta/cm2 s at H + 34 s into the most intense region of the artificial belt. Measured 10 hours later by the Injun I spacecraft, this flux was determined to be 1 × 109 beta/cm2 s.
机译:最近分析了β粒子和磁场从五仪器测量得到火箭载荷位于约1962年的海星核破裂是用来描述抗磁性腔产生地磁字段。腔在其扩张和崩溃,一个有效载荷低于,第五是上面完全腔扩大。表明,腔扩大成一个细长的形状沿磁场线和1840公里680公里垂直在1.2秒,需要一个出乎意料的长时间约16 s崩溃。腔内的β通量包含测量和相对统一保持在3×1011β/ cm2至少7年代。外的等离子体向上继续扩大完全展开腔边界和注射通量测量2.5×1010β/ cm2 H + 34年代到人工最激烈的地区带。宇宙飞船,这个流量是确定为1×109β/ cm2。

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