Coherent Phonon‐Induced Gigahertz Optical Birefringence and Its Manipulation in SrTiO3

Author:

Sun Tao12ORCID,Zhou Chun1,Guo Hongli3,Meng Zhi1,Liu Xinyu1,Wang Zhou12ORCID,Zhou Han12,Fei Yuming12,Qiu Kang1,Zhang Fapei1,Li Bolin1ORCID,Zhu Xuetao4,Yang Fang4,Zhao Jimin4,Guo Jiandong4,Zhao Jin3ORCID,Sheng Zhigao1ORCID

Affiliation:

1. Anhui Key Laboratory of Condensed Matter Physics at Extreme Conditions High Magnetic Field Laboratory HFIPS Anhui, Chinese Academy of Sciences Hefei 230031 P. R. China

2. University of Science and Technology of China Hefei 230026 P. R. China

3. ICQD/Hefei National Laboratory for Physical Sciences at Microscale and CAS Key Laboratory of Strongly‐Coupled Quantum Matter Physics and Department of Physics University of Science and Technology of China Hefei 230026 P. R. China

4. Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of Sciences Beijing 100190 P. R. China

Abstract

AbstractBirefringence, which modulates the polarization of electromagnetic wave, has been commercially developed and widely used in modern photonics. Fostered by high‐frequency signal processing and communications, feasible birefringence technologies operating in gigahertz (GHz) range are highly desired. Here, a coherent phonon‐induced GHz optical birefringence and its manipulation in SrTiO3 (STO) crystals are demonsrated. With ultrafast laser pumping, the coherent acoustic phonons with low damping are created in the transducer/STO structures. A series of transducer layers are examined and the optimized one with relatively high photon–phonon conversion efficiency, i.e., semiconducting LaRhO3 film, is obtained. The most intriguing finding here is that, by virtue of high sensitivity to strain perturbation of STO, GHz optical birefringence can be induced by the coherent acoustic phonons and the birefringent amplitudes possess crystal orientation dependence. Optical manipulation of both coherent phonons and its induced GHz birefringence by double pump technique are also realized. These findings reveal an alternative mechanism of ultrafast optical birefringence control, and offer prospects for applications in high‐frequency acoustic‐optics devices.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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