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PMN-PT crystal of less defects and more uniformity

机译:PMN-PT晶体较少缺陷和更均匀性

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3 inch lead magnesium niobate - lead titanate (PMN-PT) crystal ingots are successfully prepared using Vertical Gradient Freeze (VGF) method. Compared with the traditional Bridgman method, VGF method is expected to give higher yield and lower defects due to sufficient agitation and less thermal shock. As a result, [001] grown and poled PMN-PT crystals typically have electromechanical coupling coefficient k higher than 0.91, suitable for medical ultrasound imaging applications. Rhombohedral-tetragonal phase transition temperature is measured around 90°C and Curie temperature is measured over 125°C as typical imaging-grade crystals. Adequate agitation during growth also enhances in-wafer property uniformity. Variation coefficients for in-wafer free relative permittivity and electromechanical coupling coefficient k is measured at 2% and 1%, respectively.
机译:使用垂直梯度冷冻(VGF)方法成功制备3英寸铅镁铌酸铅钛酸铅(PMN-PT)晶锭。与传统的Bridgman方法相比,由于足够的搅拌和较少的热冲击,VGF方法预计将产生更高的产量和较低的缺陷。结果,生长和极化的PMN-PT晶体通常具有高于0.91的机电耦合系数K,适用于医用超声成像应用。测量rhombohedral-四方相转变温度约为90℃,并以125℃以典型的成像级晶体测量居里温度。在增长期间充足的搅拌也提高了晶圆形性均匀性。用于晶片内的变异系数自由相对介电常数和机电偶联系数k分别以2%和1%测量。

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