Wang Daw-Wei
Physics Department, National Tsing-Hua University, Hsinchu, Taiwan, Republic of China.
Phys Rev Lett. 2007 Feb 9;98(6):060403. doi: 10.1103/PhysRevLett.98.060403. Epub 2007 Feb 7.
We investigate the quantum phase transitions of bosonic polar molecules in a two-dimensional double layer system. We show that an interlayer bound state of dipoles (dimers) can be formed when the dipole strength is above a critical value, leading to a zero-energy resonance in the interlayer s-wave scattering channel. In the positive detuning side of the resonance, the strong repulsive interlayer pseudopotential can drive the system into a maximally entangled state, where the wave function is a superposition of two states that have all molecules in one layer and none in the other. We discuss how the zero-energy resonance, dimer states, and the maximally entangled state can be measured in time-of-flight experiments.
我们研究了二维双层系统中玻色极化分子的量子相变。我们表明,当偶极强度高于临界值时,可以形成偶极(二聚体)的层间束缚态,从而在层间s波散射通道中产生零能量共振。在共振的正失谐侧,强排斥性层间赝势可将系统驱动到最大纠缠态,其中波函数是所有分子都在一层而另一层没有分子的两个态的叠加。我们讨论了如何在飞行时间实验中测量零能量共振、二聚体态和最大纠缠态。