Orientation Controlled Anisotropy in Single Crystals of Quasi-1D BaTiS3

Fuente: arXiv
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Autores principales: Zhao, Boyang, Hoque, Md Shafkat Bin, Jung, Gwan Yeong, Mei, Hongyan, Singh, Shantanu, Ren, Guodong, Milich, Milena, Zhao, Qinai, Wang, Nan, Chen, Huandong, Niu, Shanyuan, Lee, Sang-Jun, Kuo, Cheng-Tai, Lee, Jun-Sik, Tomko, John A., Wang, Han, Kats, Mikhail, Mishra, Rohan, Hopkins, Patrick E, Ravichandran, J.
Formato: Preprint
Publicado: 2022
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author Zhao, Boyang
Hoque, Md Shafkat Bin
Jung, Gwan Yeong
Mei, Hongyan
Singh, Shantanu
Ren, Guodong
Milich, Milena
Zhao, Qinai
Wang, Nan
Chen, Huandong
Niu, Shanyuan
Lee, Sang-Jun
Kuo, Cheng-Tai
Lee, Jun-Sik
Tomko, John A.
Wang, Han
Kats, Mikhail
Mishra, Rohan
Hopkins, Patrick E
Ravichandran, J.
author_facet Zhao, Boyang
Hoque, Md Shafkat Bin
Jung, Gwan Yeong
Mei, Hongyan
Singh, Shantanu
Ren, Guodong
Milich, Milena
Zhao, Qinai
Wang, Nan
Chen, Huandong
Niu, Shanyuan
Lee, Sang-Jun
Kuo, Cheng-Tai
Lee, Jun-Sik
Tomko, John A.
Wang, Han
Kats, Mikhail
Mishra, Rohan
Hopkins, Patrick E
Ravichandran, J.
contents Low-dimensional materials with chain-like (one-dimensional) or layered (twodimensional) structures are of significant interest due to their anisotropic electrical, optical, thermal properties. One material with chain-like structure, BaTiS3 (BTS), was recently shown to possess giant in-plane optical anisotropy and glass-like thermal conductivity. To understand the origin of these effects, it is necessary to fully characterize the optical, thermal, and electronic anisotropy of BTS. To this end, BTS crystals with different orientations (aand c-axis orientations) were grown by chemical vapor transport. X-ray absorption spectroscopy (XAS) was used to characterize the local structure and electronic anisotropy of BTS. Fourier transform infrared (FTIR) reflection/transmission spectra show a large inplane optical anisotropy in the a-oriented crystals, while the c-axis oriented crystals were nearly isotropic in-plane. BTS platelet crystals are promising uniaxial materials for IR optics with their optic axis parallel to the c-axis. The thermal conductivity measurements revealed a thermal anisotropy of ~4.5 between the c- and a-axis. Time-domain Brillouin scattering showed that the longitudinal sound speed along the two axes is nearly the same suggesting that the thermal anisotropy is a result of different phonon scattering rates.
format Preprint
id arxiv_https___arxiv_org_abs_2204_03680
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Orientation Controlled Anisotropy in Single Crystals of Quasi-1D BaTiS3
Zhao, Boyang
Hoque, Md Shafkat Bin
Jung, Gwan Yeong
Mei, Hongyan
Singh, Shantanu
Ren, Guodong
Milich, Milena
Zhao, Qinai
Wang, Nan
Chen, Huandong
Niu, Shanyuan
Lee, Sang-Jun
Kuo, Cheng-Tai
Lee, Jun-Sik
Tomko, John A.
Wang, Han
Kats, Mikhail
Mishra, Rohan
Hopkins, Patrick E
Ravichandran, J.
Materials Science
Low-dimensional materials with chain-like (one-dimensional) or layered (twodimensional) structures are of significant interest due to their anisotropic electrical, optical, thermal properties. One material with chain-like structure, BaTiS3 (BTS), was recently shown to possess giant in-plane optical anisotropy and glass-like thermal conductivity. To understand the origin of these effects, it is necessary to fully characterize the optical, thermal, and electronic anisotropy of BTS. To this end, BTS crystals with different orientations (aand c-axis orientations) were grown by chemical vapor transport. X-ray absorption spectroscopy (XAS) was used to characterize the local structure and electronic anisotropy of BTS. Fourier transform infrared (FTIR) reflection/transmission spectra show a large inplane optical anisotropy in the a-oriented crystals, while the c-axis oriented crystals were nearly isotropic in-plane. BTS platelet crystals are promising uniaxial materials for IR optics with their optic axis parallel to the c-axis. The thermal conductivity measurements revealed a thermal anisotropy of ~4.5 between the c- and a-axis. Time-domain Brillouin scattering showed that the longitudinal sound speed along the two axes is nearly the same suggesting that the thermal anisotropy is a result of different phonon scattering rates.
title Orientation Controlled Anisotropy in Single Crystals of Quasi-1D BaTiS3
topic Materials Science
url https://arxiv.org/abs/2204.03680