Department of Microsystems Engineering - IMTEK, University of Freiburg, Georges-Köhler-Allee 102, 79110, Freiburg, Germany.
Fraunhofer Institute for Physical Measurement Techniques IPM, Heidenhofstraße 8, 79110, Freiburg, Germany.
Sci Rep. 2017 Aug 29;7(1):9862. doi: 10.1038/s41598-017-09703-2.
Ferroelectric domain walls are interfaces between areas of a material that exhibits different directions of spontaneous polarization. The properties of domain walls can be very different from those of the undisturbed material. Metallic-like conductivity of charged domain walls (CDWs) in nominally insulating ferroelectrics was predicted in 1973 and detected recently. This important effect is still in its infancy: The electric currents are still smaller than expected, the access to the conductivity at CDWs is hampered by contact barriers, and stability is low because of sophisticated domain structures or proximity of the Curie point. Here, we report on large, accessible, and stable conductivity at CDWs in lithium niobate (LN) crystals - a vital material for photonics. Our results mark a breakthrough: Increase of conductivity at CDWs by more than 13 orders of magnitude compared to that of the bulk, access to the effect via ohmic and diode-like contacts, and high stability for temperatures T ≤ 70 °C are demonstrated. A promising and now realistic prospect is to combine CDW functionalities with linear and nonlinear optical phenomena. Our findings allow new generations of adaptive-optical elements, of electrically controlled integrated-optical chips for quantum photonics, and of advanced LN-semiconductor hybrid optoelectronic devices.
铁电畴壁是表现出不同自发极化方向的材料区域之间的界面。畴壁的性质可能与未扰动材料有很大的不同。1973 年就预测到了在名义上绝缘的铁电体中带电荷的畴壁(CDW)具有金属般的导电性,并于最近才被检测到。这一重要效应仍处于起步阶段:电流仍然小于预期,由于畴壁的复杂结构或接近居里点,CDW 的导电性受到接触势垒的阻碍,稳定性也较低。在这里,我们报告了在铌酸锂(LN)晶体中的 CDW 上具有大的、可访问的和稳定的导电性,LN 晶体是光子学的重要材料。我们的结果标志着一个突破:与体相比,CDW 的电导率增加了 13 个数量级以上,通过欧姆和二极管型接触可以获得该效应,并且在温度 T ≤ 70°C 时具有很高的稳定性。一个很有前途且现在现实的前景是将 CDW 功能与线性和非线性光学现象结合起来。我们的发现为自适应光学元件、用于量子光子学的电控制集成光学芯片以及先进的 LN-半导体混合光电设备的新一代提供了可能。