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Thermal gradient control at the solid-liquid interface in the laser-heated pedestal growth technique

机译:激光加热基座生长技术中固液界面的热梯度控制

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摘要

The laser-heated pedestal growth technique, which is used for preparing single crystal fibers, involves very large temperature gradients at the growth interface. While this is often useful, it can also be problematic for some material systems. By introducing an additional optical component into the laser beam path, we were able to substantially decrease the axial temperature gradients. In this new configuration, the CO_2 laser beam divergence was altered by using a ZnSe beam expander. This created an optical aberration at the laser focal point, thereby redistributing the thermal energy over a larger melt surface area. With this modification the thermal gradients were decreased from (3800 +- 100)℃/cm to (2700 +- 100)℃/cm during the growth of Bi-Sr-Ca-Cu-O (2212) single crystal fibers, showing that it is possible to control the thermal gradients by manipulating the laser beam, before it enters the growth chamber.
机译:用于制备单晶纤维的激光加热基座生长技术在生长界面处涉及非常大的温度梯度。尽管这通常很有用,但对于某些物料系统也可能会出现问题。通过将附加的光学组件引入激光束路径,我们能够大幅降低轴向温度梯度。在这种新配置中,通过使用ZnSe扩束器改变了CO_2激光束的发散度。这在激光焦点处产生了光学像差,从而将热能重新分配到更大的熔体表面积上。通过这种修改,在Bi-Sr-Ca-Cu-O(2212)单晶纤维的生长过程中,热梯度从(3800 +-100)℃/ cm降低到(2700 +-100)℃/ cm,表明在进入生长室之前,可以通过控制激光束来控制温度梯度。

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