Enhanced Phonon-Phonon Interactions and Weakened Electron-Phonon Coupling in Charge-Density-Wave Topological Semimetal EuAl4 with a Possible Intermediate Electronic State
arXiv:2501.02171 · doi:10.1021/acs.jpclett.5c00007
Abstract
The origin of charge density wave (CDW) is a long-term open issue. Furthermore, the evolution of phonon-phonon interactions (PPI) across CDW transitions has rarely been investigated. Besides, whether electron-phonon coupling (EPC) would be weakened or enhanced after CDW transitions is still under debate. Additionally, CDW provides a fertile ground for uncovering intriguing intermediate electronic states. Here, we report a Raman spectroscopy study of the PPI and EPC in topological semimetal EuAl4 exhibiting a CDW phase below temperature Tc ~ 145 K. The free-charge-carrier-density (nc) and temperature dependences of the Fano asymmetric factors (1/|q|) of the two phonon modes A1g and B1g indicates that below Tc, the EPC becomes weakened probably due to the reduction of the nc. Interestingly, in the temperature range from 50 to 145 K, the steep growth of the 1/|q| leading to the significant deviation from the linear dependence on the nc, together with the shoulder-like features in the temperature evolutions of the 1/|q| and the nc around 50 K, implies the possible existence of an intermediate electronic state with the EPC distinctly larger than the CDW ground state in EuAl4. Furthermore, below Tc, the faster decrease in the full width at half maxima of the B1g phonon mode representing the collective vibrations of the CDW-modulated Al1 atoms suggests that a remarkable growth of the PPI for the B1g phonon mode after the CDW phase transition, which is in contrast to the weakening of the EPC and thus may mainly arise from the strengthening of lattice anharmonicity in EuAl4. Our results not only highlight the significance of the enhanced PPI and the weakened EPC in completely understanding the formation of the CDW phase but also initiate the exploration of novel intermediate electronic states in EuAl4.
Accepted by Journal of Physical Chemistry Letters
References in corpus (19)
- CsVSb: a topological kagome metal with a superconducting ground state
- Nematic and meta-nematic transitions in the iron pnictides
- Nematicity and Competing Orders in Superconducting Magic-Angle Graphene
- Reconstruction of Band Structure Induced by Electronic Nematicity in an FeSe Superconductor
- Chiral anomaly, Charge Density Waves, and Axion Strings from Weyl Semimetals
- Phonon-Phonon Interactions in Strongly Bonded Solids: Selection Rules and Higher-Order Processes
- Charge density wave orders and enhanced superconductivity under pressure in the kagome metal CsV3Sb5
- Anomalous Hall resistivity and possible topological Hall effect in the EuAl antiferromagnet
- Observation of electronic nematicity driven by three-dimensional charge density wave in kagome lattice KVSb
- Charge density waves and phonon-electron coupling in ZrTe investigated by Raman spectroscopy and first-principles calculations
- Electrically controlled superconductor-insulator transition and giant anomalous Hall effect in kagome metal CsV3Sb5 nanoflakes
- Thermodynamic insights into the intricate magnetic phase diagram of EuAl
- Orthorhombic charge density wave on the tetragonal lattice of EuAl4
- Identification of a Nematic Pair Density Wave State in Bi2Sr2CaCu2O8+x
- Discovery of mesoscopic nematicity wave in iron-based superconductors
- Strong and Tunable Electrical-Anisotropy in Type-II Weyl Semimetal Candidate WP2 with Broken Inversion Symmetry
- Origin of Charge Density Wave in Topological Semimetals SrAl4 and EuAl4
- Persistence of Monoclinic Crystal Structure in Three-Dimensional Second-Order Topological Insulator Candidate 1T'-MoTe2 Thin Flake without Structural Phase transition
- Charge-density wave transition in magnetic topological semimetal EuAl