Albert Samuel, Biroli Giulio, Ladieu François, Tourbot Roland, Urbani Pierfrancesco
SPEC, CEA, CNRS, Université Paris-Saclay, CEA Saclay Bâtiment 772, 91191 Gif-sur-Yvette Cedex, France.
Laboratoire de Physique de l'Ecole normale supérieure ENS, Université PSL, CNRS, Sorbonne Université, Université Paris-Diderot, 75005 Sorbonne Paris Cité, Paris, France.
Phys Rev Lett. 2021 Jan 15;126(2):028001. doi: 10.1103/PhysRevLett.126.028001.
We search for a Gardner transition in glassy glycerol, a standard molecular glass, measuring the third harmonics cubic susceptibility χ_{3}^{(3)} from slightly below the usual glass transition temperature down to 10 K. According to the mean-field picture, if local motion within the glass were becoming highly correlated due to the emergence of a Gardner phase then χ_{3}^{(3)}, which is analogous to the dynamical spin-glass susceptibility, should increase and diverge at the Gardner transition temperature T_{G}. We find instead that upon cooling |χ_{3}^{(3)}| decreases by several orders of magnitude and becomes roughly constant in the regime 100-10 K. We rationalize our findings by assuming that the low temperature physics is described by localized excitations weakly interacting via a spin-glass dipolar pairwise interaction in a random magnetic field. Our quantitative estimations show that the spin-glass interaction is twenty to fifty times smaller than the local random field contribution, thus rationalizing the absence of the spin-glass Gardner phase. This hints at the fact that a Gardner phase may be suppressed in standard molecular glasses, but it also suggests ways to favor its existence in other amorphous solids and by changing the preparation protocol.
我们在标准分子玻璃——玻璃态甘油中寻找加德纳转变,测量了从略低于通常的玻璃转变温度直至10 K的三次谐波立方磁化率χ_{3}^{(3)}。根据平均场图像,如果由于加德纳相的出现,玻璃内部的局部运动变得高度相关,那么类似于动态自旋玻璃磁化率的χ_{3}^{(3)}应该在加德纳转变温度T_{G}处增加并发散。相反,我们发现冷却时|χ_{3}^{(3)}|下降了几个数量级,并在100 - 10 K范围内大致保持恒定。我们通过假设低温物理由在随机磁场中通过自旋玻璃偶极成对相互作用弱相互作用的局域激发来解释我们的发现。我们的定量估计表明,自旋玻璃相互作用比局部随机场贡献小二十到五十倍,从而解释了自旋玻璃加德纳相的不存在。这暗示了在标准分子玻璃中加德纳相可能被抑制这一事实,但也提出了在其他非晶态固体中以及通过改变制备方案来促进其存在的方法。