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IR cyclotron resonance of solid states in magnetic fields up to 700 Tesla

机译:高达700特斯拉的磁场中红外固态的回旋加速器共振

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We report on the first successful IR-cyclotron resonance experiment in ultrahigh magnetic fields up to 700 T generated by explosive driven flux compression. The sample under investigation was an epitaxially grown p-type cubic GaN-layer, a material which has become worldwide the subject of extensive experimental and theoretical investigations because of its application in optoelectronic devices operating in the blue-to-violet wavelength range (1). Three distinct transmission minima at about 90 T, 270 T and 400T-430 T with a resonance depth of a few percent only, are clearly resolved. The data in the lower field region correspond excellently to results derived previously from experiments in fields up to 275 T generated by use of the single-turn coil technique.
机译:我们报道了爆炸驱动磁通压缩产生的高达700 T的超高磁场的第一个成功的IR-回旋共振实验。被研究的样品是外延生长的p型立方GaN层,由于其在工作于蓝紫色范围内的光电器件中的应用,该材料已成为全球范围内广泛的实验和理论研究的对象(1) 。清楚地解决了在大约90 T,270 T和400T-430 T处只有三个百分点的谐振深度的三个不同的传输最小值。下部磁场区域中的数据与先前通过使用单匝线圈技术在不超过275 T的磁场中进行的实验得出的结果非常吻合。

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