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Method for minimizing convection during crystal growth from solution

机译:使溶液从晶体生长过程中对流减至最小的方法

摘要

Disclosed is a method and apparatus for growing in a gravitational field a microscopic crystal from a solution. Solution is held in a vertical chamber which is relatively thin, the thin dimension being generally perpendicular to the vertical. There is a substrate crystal disposed at either the upper or lower end of the chamber and the crystal grows from this substrate crystal in one direction. In accordance with this invention, the temperature conditions of the solution are controlled so that as the crystal forms the effects of buoyant convection within the solution are minimized. This is accomplished in two different ways depending upon whether the crystal is grown from the upper or lower end of the chamber. When grown from the upper end of the chamber, the temperature of the solution is controlled so that it remains essentially isothermal so that there is essentially no heat loss from the solution. When the crystal is grown from the lower end of the chamber, the temperatures of the solution is controlled so that there is a differential in temperature throughout the solution which provides a positive thermal gradient within the chamber.
机译:公开了一种用于在重力场中从溶液中生长微观晶体的方法和设备。溶液保持在相对较薄的垂直腔室中,该较薄尺寸通常垂直于垂直腔。在腔室的上端或下端设置有衬底晶体,并且该晶体从该衬底晶体沿一个方向生长。根据本发明,控制溶液的温度条件,使得随着晶体形成,溶液内的浮力对流的影响最小化。这取决于晶体是从腔室的上端还是下端生长而以两种不同的方式完成的。当从腔室的上端生长时,控制溶液的温度以使其基本上保持等温,从而基本上没有溶液的热损失。当晶体从腔室的下端生长时,控制溶液的温度,以使整个溶液存在温差,从而在腔室内提供正的热梯度。

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