Kalimuddin Sk, Chatterjee Sudipta, Bera Arnab, Afzal Hasan, Bera Satyabrata, Roy Deep Singha, Das Soham, Debnath Tuhin, Bansal Bhavtosh, Mondal Mintu
School of Physical Sciences, <a href="https://ror.org/050p6gz73">Indian Association for the Cultivation of Science</a>, Jadavpur, Kolkata 700032, India.
Department of Condensed Matter and Materials Physics, <a href="https://ror.org/00kz6qq24">S. N. Bose National Centre for Basic Sciences</a>, Kolkata 700106, India.
Phys Rev Lett. 2024 Jun 28;132(26):266504. doi: 10.1103/PhysRevLett.132.266504.
(TaSe_{4})_{2}I is a well-studied quasi-one-dimensional compound long-known to have a charge-density wave (CDW) transition around 263 K. We argue that the critical fluctuations of the pinned CDW order parameter near the transition can be inferred from the resistance noise on account of their coupling to the dissipative normal carriers. Remarkably, the critical fluctuations of the CDW order parameter are slow enough to survive the thermodynamic limit and dominate the low-frequency resistance noise. The noise variance and relaxation time show rapid growth (critical opalescence and critical slowing down) within a temperature window of ϵ≈±0.1, where ϵ is the reduced temperature. This is very wide but consistent with the Ginzburg criterion. We further show that this resistance noise can be quantitatively used to extract the associated critical exponents. Below |ϵ|≲0.02, we observe a crossover from mean-field to a fluctuation-dominated regime with the critical exponents taking anomalously low values. The distribution of fluctuations in the critical transition region is skewed and strongly non-Gaussian. This non-Gaussianity is interpreted as the breakdown of the validity of the central limit theorem as the diverging coherence volume becomes comparable to the macroscopic sample size. The large magnitude critical fluctuations observed over an extended temperature range, as well as the crossover from the mean-field to the fluctuation-dominated regime highlight the role of the quasi-one-dimensional character in controlling the phase transition.
(TaSe₄)₂I是一种经过充分研究的准一维化合物,长期以来已知其在约263K附近存在电荷密度波(CDW)转变。我们认为,由于钉扎的CDW序参量与耗散的正常载流子耦合,其在转变附近的临界涨落可从电阻噪声中推断出来。值得注意的是,CDW序参量的临界涨落足够缓慢,能够在热力学极限下存续并主导低频电阻噪声。在约±0.1的温度窗口内,噪声方差和弛豫时间呈现快速增长(临界乳光和临界慢化),其中ϵ为约化温度。这一窗口很宽,但与金兹堡判据相符。我们进一步表明,这种电阻噪声可定量用于提取相关的临界指数。在|ϵ|≲0.02以下,我们观察到从平均场到涨落主导 regime的转变,临界指数取值异常低。临界转变区域内涨落的分布是偏斜的且强烈非高斯的。这种非高斯性被解释为随着发散的相干体积变得与宏观样品尺寸相当,中心极限定理有效性的失效。在扩展的温度范围内观察到的大幅度临界涨落,以及从平均场到涨落主导 regime的转变,凸显了准一维特性在控制相变中的作用。