Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K
A charge density wave (CDW) ground state is observed in polycrystalline Cu2Se below 125 K, which corresponds to an energy gap of 40.9 meV and an electron-phonon coupling constant of 0.6. Due to the polycrystalline structure, the Peierls transition process has been expanded to a wide temperature rang...
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doaj-61937be33cf34928912fb9326a3ee01b2020-11-24T22:41:44ZengElsevierJournal of Materiomics2352-84782017-06-013215015710.1016/j.jmat.2016.12.003Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 KMengliang Yao0Weishu Liu1Xiang Chen2Zhensong Ren3Stephen Wilson4Zhifeng Ren5Cyril P. Opeil6Department of Physics, Boston College, Chestnut Hill, MA 02467, USADepartment of Materials Science and Engineering, Southern University of Science and Technology, Shenzhen, Guangdong 518055, ChinaDepartment of Physics, Boston College, Chestnut Hill, MA 02467, USADepartment of Physics and TcSUH, University of Houston, TX 77204, USADepartment of Materials, University of California, Santa Barbara, CA 93106, USADepartment of Physics and TcSUH, University of Houston, TX 77204, USADepartment of Physics, Boston College, Chestnut Hill, MA 02467, USAA charge density wave (CDW) ground state is observed in polycrystalline Cu2Se below 125 K, which corresponds to an energy gap of 40.9 meV and an electron-phonon coupling constant of 0.6. Due to the polycrystalline structure, the Peierls transition process has been expanded to a wide temperature range from 90 K to 160 K. The Hall carrier concentration shows a continuous decrease from 2.1 × 1020 to 1.6 × 1020 cm−3 in the temperature range from 160 K to 90 K, while almost unchanged above 160 K and below 90 K. After entering the CDW ground state, a wave-like fluctuation was observed in the I-V curve near 50 K, which exhibits a periodic negative differential resistivity in an applied electric field due to the current. We also investigated the doping effect of Zn, Ni, and Te on the CDW ground state. Both Zn and Ni doped Cu2Se show a CDW character with increased energy gap and electron-phonon coupling constant, but no notable Peierls transition was observed in Te doped Cu2Se. Similar wave-like I-V curve was also seen in Cu1.98Zn0.02Se near 40 K. The regular fluctuation in the dc I-V curve was not magnetic field sensitive, but temperature and sample size sensitive.http://www.sciencedirect.com/science/article/pii/S2352847816301101Peierls transitionCDWdc I-V curveWave-like fluctuationCopper selenide |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mengliang Yao Weishu Liu Xiang Chen Zhensong Ren Stephen Wilson Zhifeng Ren Cyril P. Opeil |
spellingShingle |
Mengliang Yao Weishu Liu Xiang Chen Zhensong Ren Stephen Wilson Zhifeng Ren Cyril P. Opeil Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K Journal of Materiomics Peierls transition CDW dc I-V curve Wave-like fluctuation Copper selenide |
author_facet |
Mengliang Yao Weishu Liu Xiang Chen Zhensong Ren Stephen Wilson Zhifeng Ren Cyril P. Opeil |
author_sort |
Mengliang Yao |
title |
Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K |
title_short |
Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K |
title_full |
Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K |
title_fullStr |
Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K |
title_full_unstemmed |
Anomalous CDW ground state in Cu2Se: A wave-like fluctuation of the dc I-V curve near 50 K |
title_sort |
anomalous cdw ground state in cu2se: a wave-like fluctuation of the dc i-v curve near 50 k |
publisher |
Elsevier |
series |
Journal of Materiomics |
issn |
2352-8478 |
publishDate |
2017-06-01 |
description |
A charge density wave (CDW) ground state is observed in polycrystalline Cu2Se below 125 K, which corresponds to an energy gap of 40.9 meV and an electron-phonon coupling constant of 0.6. Due to the polycrystalline structure, the Peierls transition process has been expanded to a wide temperature range from 90 K to 160 K. The Hall carrier concentration shows a continuous decrease from 2.1 × 1020 to 1.6 × 1020 cm−3 in the temperature range from 160 K to 90 K, while almost unchanged above 160 K and below 90 K. After entering the CDW ground state, a wave-like fluctuation was observed in the I-V curve near 50 K, which exhibits a periodic negative differential resistivity in an applied electric field due to the current. We also investigated the doping effect of Zn, Ni, and Te on the CDW ground state. Both Zn and Ni doped Cu2Se show a CDW character with increased energy gap and electron-phonon coupling constant, but no notable Peierls transition was observed in Te doped Cu2Se. Similar wave-like I-V curve was also seen in Cu1.98Zn0.02Se near 40 K. The regular fluctuation in the dc I-V curve was not magnetic field sensitive, but temperature and sample size sensitive. |
topic |
Peierls transition CDW dc I-V curve Wave-like fluctuation Copper selenide |
url |
http://www.sciencedirect.com/science/article/pii/S2352847816301101 |
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