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Stability of magnetically suppressed solutal convection in crystal growth from solutions

机译:溶液中晶体生长中受磁抑制的对流的稳定性

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Convective motions during different crystal growth processes are known to interfere with the quality of the growth process and are hypothesized to be detrimental to the quality of the grown crystal. In crystal growth from solutions for example, without fluid interfaces and free surfaces, gravity driven phenomena such as thermal and solutal buoyancy effects and sedimentation are the primary causes of fluid flows in the system. While crystallization in microgravity can approach diffusion limited growth conditions (no convection), terrestrially strong magnetic fields can be used to control fluid flow and sedimentation effects. In this work, a theory is presented on the stability of solutal convection of a magnetized fluid in the presence of a magnetic field. The requirements for stability are developed and compared to experiments performed within the bore of a superconducting magnet. The theoretical predictions are in good agreement with the experiments and show solutal convection can be stabilized if the surrounding fluid has larger magnetic susceptibility and the magnetic field has a specific structure. Discussion on the application of the technique to protein crystallization is also provided.
机译:已知在不同晶体生长过程中的对流运动会干扰生长过程的质量,并且被认为对生长晶体的质量有害。例如,在没有溶液界面和自由表面的情况下从溶液中生长晶体时,重力驱动的现象(例如热浮力和溶液浮力效应以及沉降)是系统中流体流动的主要原因。虽然微重力作用下的结晶可以达到扩散受限的生长条件(无对流),但可以使用地面强磁场来控制流体流动和沉降效果。在这项工作中,提出了一种关于在磁场存在下磁化流体的对流稳定性的理论。提出了对稳定性的要求,并将其与在超导磁体孔内进行的实验进行了比较。理论预测与实验结果吻合良好,表明如果周围流体的磁化率较大且磁场具有特定的结构,则对流稳定。还讨论了该技术在蛋白质结晶中的应用。

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