Electronic Materials Research Lab, Key Lab of Education Ministry and State Key Laboratory for Mechanical Behavior of Materials, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an, 710049, China.
School of Physics, Harbin Institute of Technology, Harbin 150001, China.
Science. 2022 Apr 22;376(6591):371-377. doi: 10.1126/science.abn7711. Epub 2022 Apr 21.
Relaxor-lead titanate (PbTiO) crystals, which exhibit extremely high piezoelectricity, are believed to possess high electro-optic (EO) coefficients. However, the optical transparency of relaxor-PbTiO crystals is severely reduced as a result of light scattering and reflection by domain walls, limiting electro-optic applications. Through synergistic design of a ferroelectric phase, crystal orientation, and poling technique, we successfully removed all light-scattering domain walls and achieved an extremely high transmittance of 99.6% in antireflection film-coated crystals, with an ultrahigh EO coefficient of 900 picometers per volt (pm V), >30 times as high as that of conventionally used EO crystals. Using these crystals, we fabricated ultracompact EO Q-switches that require very low driving voltages, with superior performance to that of commercial Q-switches. Development of these materials is important for the portability and low driving voltage of EO devices.
弛豫铅钛酸(PbTiO)晶体具有极高的压电性,被认为具有较高的电光(EO)系数。然而,弛豫铅钛酸晶体的光学透明度由于畴壁的光散射和反射而严重降低,限制了电光应用。通过铁电相、晶体取向和极化技术的协同设计,我们成功地消除了所有光散射畴壁,在具有抗反射膜的晶体中实现了 99.6%的超高透光率,超高压电光系数达到 900 皮米每伏特(pmV),比传统使用的电光晶体高出 30 多倍。我们使用这些晶体制造了超紧凑的电光 Q 开关,其所需的驱动电压非常低,性能优于商用 Q 开关。这些材料的发展对于电光器件的便携性和低驱动电压非常重要。