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Three order increase in scanning speed of space charge-controlled KTN deflector by eliminating electric field induced phase transition in nanodisordered KTN

机译:通过消除纳米无序KTN中电场感应的相变空间电荷控制KTN偏转器的扫描速度提高了三阶

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摘要

In this paper, we report a three orders-of-magnitude increase in the speed of a space-charge-controlled KTN beam deflector achieved by eliminating the electric field-induced phase transition (EFIPT) in a nanodisordered KTN crystal. Previously, to maximize the electro-optic effect, a KTN beam deflector was operated at a temperature slightly above the Curie temperature. The electric field could cause the KTN to undergo a phase transition from the paraelectric phase to the ferroelectric phase at this temperature, which causes the deflector to operate in the linear electro-optic regime. Since the deflection angle of the deflector is proportional to the space charge distribution but not the magnitude of the applied electric field, the scanning speed of the beam deflector is limited by the electron mobility within the KTN crystal. To overcome this speed limitation caused by the EFIPT, we propose to operate the deflector at a temperature above the critical end point. This results in a significant increase in the scanning speed from the microsecond to nanosecond regime, which represents a major technological advance in the field of fast speed beam scanners. This can be highly beneficial for many applications including high-speed imaging, broadband optical communications, and ultrafast laser display and printing.
机译:在本文中,我们报告了通过消除纳米无序KTN晶体中的电场感应相变(EFIPT)而实现的,由空间电荷控制的KTN光束偏转器的速度提高了三个数量级。以前,为了使电光效应最大化,在略高于居里温度的温度下运行KTN光束偏转器。电场可能导致KTN在此温度下经历从顺电相到铁电相的相变,这会导致偏转器在线性电光状态下工作。由于偏转器的偏转角与空间电荷分布成正比,而不与所施加电场的大小成正比,因此光束偏转器的扫描速度受到KTN晶体内电子迁移率的限制。为了克服由EFIPT引起的速度限制,我们建议在高于临界终点的温度下操作导流板。这导致扫描速度从微秒级到纳秒级显着提高,这代表了快速光束扫描仪领域的一项重大技术进步。这对于包括高速成像,宽带光通信以及超快激光显示和打印在内的许多应用可能是非常有益的。

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