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Glass spheres produced by magnetic levitation method

机译:磁悬浮法生产的玻璃球

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摘要

Melting of glass levitated in high magnetic fields has been performed by using a hybrid magnet and a CO., laser. A sphere of an optical glass (BK7) has been obtained through melting and cooling without any crucible. Raman scattering and electron spin resonance (ESR) of the glass sphere showed no spatial anisotropy with respect to the applied field. Microspheres of binary sodium tellurite glass were also obtained for the first time by an evaporation-condensation process in high magnetic fields. Thermal convection was suppressed under a magnetic force of -0.8g. The size of microspheres produced under the magnetic force was about 500 nm at most. This size is one-half the size of spheres produced without a magnetic field. Raman scattering measurements on microspheres produced under the magnetic field showed different spectra from those without a magnetic field. The difference is due to a deficiency of sodium ions in the spheres produced without a magnetic field. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 11]
机译:悬浮在高磁场中的玻璃的熔融已经通过使用混合磁体和CO。激光来进行。光学玻璃(BK7)的球体是通过熔化和冷却获得的,没有任何坩埚。玻璃球的拉曼散射和电子自旋共振(ESR)相对于外加电场没有空间各向异性。二元碲化钠玻璃微球也是在高磁场下通过蒸发-冷凝过程首次获得的。在-0.8g磁力下抑制了热对流。在磁力作用下产生的微球的大小最多约为500 nm。该尺寸是没有磁场产生的球体尺寸的一半。在磁场下产生的微球上的拉曼散射测量显示出与没有磁场的微球不同的光谱。差异是由于在没有磁场的情况下产生的球体中钠离子的缺乏。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:11]

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