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相关论文: Laser-Induced Charge-Density-Wave Transient Depinn…

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Charge density wave (CDW) is a collective quantum phenomenon with a charge modulation in solids1-2. Condensation of electron and hole pairs with finite momentum will lead to such an ordered state3-7. However, lattice symmetry breaking…

We investigate the thermal-driven charge density wave (CDW) transition of two cubic superconducting intermetallic systems Lu(Pt1-xPdx)2In and (Sr1-xCax)3Ir4Sn13 by means of x-ray diffraction technique. A detailed analysis of the CDW…

强关联电子 · 物理学 2020-05-27 F. B. Carneiro , L. S. I. Veiga , J. R. L. Mardegan , R. Khan , C. Macchiutti , A. Lopez , E. M. Bittar

Charge density wave (CDW) materials can undergo an ultrafast phase transition after an ultrashort laser pulse excitation, and the suggested underlying mechanisms have always been associated with two main features: excitonic…

材料科学 · 物理学 2021-12-24 Zhao-Jun Suo , Wen-Hao Liu , Zhi Wang , Hao-Wen Liu , Jun-Wei Luo , Shu-Shen Li , Lin-Wang Wang

In the quasi-2D electron systems of the layered transition metal dichalcogenides (TMD) there is still a controversy about the nature of the transitions to charge-density wave (CDW) phases, i.e. whether they are described by a Peierls-type…

An incommensurate CDW may have the ability to slide, i.e., to generate an excess of current when the system is submitted to an external field. Sliding phenomenon is closely related to deformation of the periodic lattice distortion…

In this article, we review different studies based on advanced x-ray diffraction techniques - especially coherent x-ray diffraction - that allowed us to reveal the behaviour of such symmetry-breaking systems as Charge Density Wave (CDW) and…

强关联电子 · 物理学 2023-07-26 David Le Bolloc'h , E. Bellec , N. Kirova , V. L. R. Jacques

Charge density waves (CDW) are states of broken symmetry with a periodic modulation of charge and lattice typically leading to the opening of a gap in the band structure. In the model CDW system 1T-TiSe$_2$ such a gap opens up between its…

Charge density waves (CDW) and their concomitant periodic lattice distortions (PLD) govern the electronic properties in many layered transition-metal dichalcogenides. In particular, 1T-TaS2 undergoes a metal-to-insulator phase transition as…

We report time-resolved x-ray scattering measurements of the transient structural response of the sliding {\bf Q}$_{1}$ charge-density-wave (CDW) in NbSe$_{3}$ to a reversal of the driving electric field. The observed time scale…

凝聚态物理 · 物理学 2009-10-22 E. Sweetland , A. C. Finnefrock , W. J. Podulka , M. Sutton , J. D. Brock

Time-resolved elastic neutron scattering combined with rapid laser heating was used to probe the charge density wave (CDW) state in 1T-TiSe$_2$, capturing both the melting and reformation of the CDW on long timescales and providing clues on…

材料科学 · 物理学 2025-09-22 K. Dharmasiri , S. S. Philip , D. Louca , S. A. Chen , M. D. Frontzek , Z. J. Morgan , C. Hua

We present the first direct study of charge density wave (CDW) formation in quasi-2D single layer LaTe_2 using high-resolution angle resolved photoemission spectroscopy (ARPES) and low energy electron diffraction (LEED). CDW formation is…

强关联电子 · 物理学 2009-11-13 D. R. Garcia , G. -H. Gweon , S. Y. Zhou , J. Graf , C. M. Jozwiak , M. H. Jung , Y. S. Kwon , A. Lanzara

Experimental evidence on high-Tc cuprates reveals ubiquitous charge density wave (CDW) modulations, which coexist with superconductivity. Although the CDW had been predicted by theory, important questions remain about the extent to which…

The strongly correlated charge density wave (CDW) phase of 1T-TiSe$_2$ is being extensively researched to verify the claims of a unique chiral order due to the presence of three equivalent Fermi wavevectors involved in the CDW formation.…

The so-called stripe phase of the manganites is an important example of the complex behaviour of metal oxides, and has long been interpreted as the localisation of charge at atomic sites. Here, we demonstrate via resistance measurements on…

强关联电子 · 物理学 2009-11-13 Susan Cox , J. Singleton , R. D. McDonald , A. Migliori , P. B. Littlewood

A charge density wave (CDW) is one of the fundamental instabilities of the Fermi surface occurring in a wide range of quantum materials. In dimensions higher than one, where Fermi surface nesting can play only a limited role, the selection…

Recently, kagome lattice metal AV$_3$Sb$_5$ (A = K, Rb, Cs) family has received wide attention due to its presence of superconductivity, charge density wave (CDW) and peculiar properties from topological nontrivial electronic structure.…

超导电性 · 物理学 2021-10-14 Z. X. Wang , Q. Wu , Q. W. Yin , Z. J. Tu , C. S. Gong , T. Lin , Q. M. Liu , L. Y. Shi , S. J. Zhang , D. Wu , H. C. Lei , T. Dong , N. L. Wang

We investigate the macroscopic effects of charge density waves (CDW) and superconductivity in layered superconducting systems with broken lattice inversion symmetry (allowing for piezoelectricity) such as two dimensional (2D) transition…

超导电性 · 物理学 2009-11-10 B. Uchoa , A. H. Castro Neto , G. G. Cabrera

Diffraction measurements performed via transmission electron microscopy and high resolution X-ray scattering reveal two distinct charge density wave transitions in Gd$_2$Te$_5$ at $T_{c1}$ = 410(3) and $T_{c2}$ = 532(3) K, associated with…

强关联电子 · 物理学 2008-08-18 K. Y. Shin , N. Ru , C. L. Condron , Y. Q. Wu , M. J. Kramer , M. F. Toney , I. R. Fisher

In stark contrast to the conventional charge density wave (CDW) materials, the one-dimensional CDW on the In/Si(111) surface exhibits immediate damping of the CDW oscillation during the photoinduced phase transition. Here, by successfully…

材料科学 · 物理学 2023-04-11 Yu-Xiang Gu§ , Wen-Hao Liu§ , Zhi Wang , Shu-Shen Li , Lin-Wang Wang , Jun-Wei Luo

We present first systematic studies of the photoinduced phase transition from the ground charge density wave (CDW) state to the normal metallic (M) state in the prototype quasi-1D CDW system K0.3MoO3. Ultrafast non-thermal CDW melting is…

强关联电子 · 物理学 2009-11-13 A. Tomeljak , H. Schäfer , D. Städter , M. Beyer , K. Biljakovic , J. Demsar