Nosenko V, Goree J
Department of Physics and Astronomy, The University of Iowa, Iowa City, Iowa 52242, USA.
Phys Rev Lett. 2004 Oct 8;93(15):155004. doi: 10.1103/PhysRevLett.93.155004. Epub 2004 Oct 7.
The shear viscosity of a two-dimensional liquid-state dusty plasma was measured experimentally. A monolayer of highly charged polymer microspheres, with a Yukawa interaction, was suspended in a plasma sheath. Two counterpropagating Ar+ laser beams pushed the particles, causing shear-induced melting of the monolayer and a shear flow in a planar Couette configuration. By fitting the particle velocity profiles in the shear flow to a Navier-Stokes model, the kinematic viscosity was calculated; it was of order 1 mm(2) s(-1), depending on the monolayer's parameters and shear stress applied.
对二维液态尘埃等离子体的剪切粘度进行了实验测量。具有 Yukawa 相互作用的单层高电荷聚合物微球悬浮在等离子体鞘层中。两束反向传播的 Ar+ 激光束推动粒子,导致单层发生剪切诱导熔化,并在平面库埃特构型中产生剪切流。通过将剪切流中的粒子速度分布拟合到 Navier-Stokes 模型,计算出运动粘度;其量级为 1 mm(2) s(-1),这取决于单层的参数和所施加的剪应力。