Raman scattering fingerprints of the charge density wave state in one-dimensional NbTe4

N Natalia Zawadzka (Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,) C Cem Sevik (Department of Physics-NANOlight Center of Excellence, University of Antwerp 2 , Antwerp B-2020,) Z Zahir Muhammad Z Zia Ur Rehman W Weisheng Zhao A Adam Babiński (Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,) M Maciej R. Molas (Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,)

Abstract

Charge density waves (CDWs) are ordered quantum states of conduction electrons accompanied by periodic lattice distortions. Raman scattering (RS) spectroscopy is, therefore, well suited for probing CDW-induced structural modulations. The CDW state in quasi-one-dimensional NbTe4 is investigated using RS spectroscopy. At T = 5 K, the resonantly enhanced Raman spectrum exhibits 25 phonon modes. Polarization-dependent measurements reveal a strong coupling between phonon-mode symmetry and crystallographic symmetry, with modes polarized parallel or perpendicular to the crystallographic c axis, along which the one-dimensional structure is elongated. Temperature-dependent RS measurements identify a transition between commensurate and incommensurate CDW phases, accompanied by pronounced thermal hysteresis, with transition temperatures of approximately 45 K upon cooling and 90 K upon warming. The hysteresis width depends on the warming rate, indicating a finite nucleation rate of CDW domains and suggesting potential relevance for memory-device applications.

Article Details

Volume / Issue Vol. 128, Issue 11
Published March 16, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

N

Natalia Zawadzka

Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,

C

Cem Sevik

Department of Physics-NANOlight Center of Excellence, University of Antwerp 2 , Antwerp B-2020,

Z

Zahir Muhammad

Z

Zia Ur Rehman

W

Weisheng Zhao

A

Adam Babiński

Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,

M

Maciej R. Molas

Faculty of Physics, University of Warsaw 1 , 02-093 Warsaw,