Meyer Julia S, Matveev K A, Larkin A I
Department of Physics, The Ohio State University, Columbus, Ohio 43210, USA.
Phys Rev Lett. 2007 Mar 23;98(12):126404. doi: 10.1103/PhysRevLett.98.126404. Epub 2007 Mar 20.
Upon increasing the electron density in a quantum wire, the one-dimensional electron system undergoes a transition to a quasi-one-dimensional state. In the absence of interactions between electrons, this corresponds to filling up the second subband of transverse quantization, and there are two gapless excitation modes above the transition. On the other hand, strongly interacting one-dimensional electrons form a Wigner crystal, and the transition corresponds to it splitting into two chains (zigzag crystal). We show that the soft mode driving the transition to the zigzag state is gapped, and only one gapless mode exists above the transition. Furthermore, we establish that in the vicinity of the transition already arbitrarily weak interactions open a gap in the second mode. We then argue that only one gapless mode exists near the transition at any interaction strength.
随着量子线中电子密度的增加,一维电子系统会经历向准一维状态的转变。在电子之间不存在相互作用的情况下,这对应于横向量子化的第二个子带被填满,并且在转变之上存在两种无带隙激发模式。另一方面,强相互作用的一维电子形成维格纳晶体,而这种转变对应于它分裂成两条链(之字形晶体)。我们表明,驱动向之字形状态转变的软模是有能隙的,并且在转变之上仅存在一种无带隙模式。此外,我们确定在转变附近,即使是任意弱的相互作用也会在第二种模式中打开一个能隙。然后我们认为,在任何相互作用强度下,转变附近都仅存在一种无带隙模式。