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受限驱动的量子液体混合物相分离。

Confinement-driven phase separation of quantum liquid mixtures.

机构信息

Department of Physics, Indiana University, Bloomington, 47405, USA.

出版信息

Phys Rev Lett. 2012 Aug 17;109(7):075301. doi: 10.1103/PhysRevLett.109.075301. Epub 2012 Aug 16.

Abstract

We report small-angle neutron scattering studies of liquid helium mixtures confined in Mobil Crystalline Material-41 (MCM-41), a porous silica glass with narrow cylindrical nanopores (d=3.4 nm). MCM-41 is an ideal model adsorbent for fundamental studies of gas sorption in porous media because its monodisperse pores are arranged in a 2D triangular lattice. The small-angle scattering consists of a series of diffraction peaks whose intensities are determined by how the imbibed liquid fills the pores. Pure (4)He adsorbed in the pores show classic, layer-by-layer film growth as a function of pore filling, leaving the long range symmetry of the system intact. In contrast, the adsorption of (3)He-(4)He mixtures produces a structure incommensurate with the pore lattice. Neither capillary condensation nor preferential adsorption of one helium isotope to the pore walls can provide the symmetry-breaking mechanism. The scattering is consistent with the formation of randomly distributed liquid-liquid microdomains ∼2.3 nm in size, providing evidence that confinement in a nanometer scale capillary can drive local phase separation in quantum liquid mixtures.

摘要

我们报告了在 Mobil Crystalline Material-41(MCM-41)中受限的液氦混合物的小角中子散射研究,MCM-41 是一种具有窄圆柱形纳米孔(d=3.4nm)的多孔硅玻璃。MCM-41 是多孔介质中气体吸附基础研究的理想模型吸附剂,因为其单分散孔排列在二维三角形晶格中。小角散射由一系列衍射峰组成,其强度取决于被吸收的液体如何填充孔。纯(4)He 吸附在孔中表现出经典的、逐层的膜生长,这是孔填充的函数,使系统的长程对称性保持完整。相比之下,(3)He-(4)He 混合物的吸附产生了与孔晶格不相符的结构。毛细凝聚或一种氦同位素对孔壁的优先吸附都不能提供对称破缺的机制。散射与随机分布的液体-液体微域的形成一致,微域尺寸约为 2.3nm,这为在纳米尺度毛细管中的受限可以驱动量子液体混合物的局部相分离提供了证据。

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