论文标题
在对称性线性 - Zigzag转换时的有限温度谱
Finite temperature spectrum at the symmetry-breaking linear-zigzag transition
论文作者
论文摘要
我们研究了在对称性的线性向对称性线性向锯齿形转变和有限温度下的捕获离子链的正常模式光谱。为此,我们调节多普勒冷却激光器的振幅,以激发和测量模式振荡。未观察到临界点的预期模式软化是二阶转变的标志。数值模拟表明,这主要是由于链的有限温度。对轨迹的检查表明,正常模式光谱的热偏移可以通过在对称性损坏相的两个基态构型之间共同跳跃来理解。我们开发了一个有效的分析模型,该模型使我们能够重现低频光谱,这是温度的函数并接近过渡点。在此模型中,软模式的频移是由于谐音耦合与光谱的高频模式的耦合,并充当平均有效的热环境。我们的研究可能证明对于接近临界点的实施地面激光冷却很重要。
We investigate the normal mode spectrum of a trapped ion chain at the symmetry-breaking linear to zigzag transition and at finite temperatures. For this purpose we modulate the amplitude of the Doppler cooling laser in order to excite and measure mode oscillations. The expected mode softening at the critical point, a signature of the second-order transition, is not observed. Numerical simulations show that this is mainly due to the finite temperature of the chain. Inspection of the trajectories suggest that the thermal shifts of the normal-mode spectrum can be understood by the ions collectively jumping between the two ground state configurations of the symmetry broken phase. We develop an effective analytical model, which allows us to reproduce the low-frequency spectrum as a function of the temperature and close to the transition point. In this model the frequency shift of the soft mode is due to the anharmonic coupling with the high frequency modes of the spectrum, acting as an averaged effective thermal environment. Our study could prove important for implementing ground-state laser cooling close to the critical point.