论文标题
量子相变研究的离子陷阱世俗频率的稳定
Stabilization of ion-trap secular frequencies for a quantum phase transition study
论文作者
论文摘要
线性射频(RF)保罗陷阱中的一系列离子是研究结构相变的良好候选者,例如由于陷阱限制强度的修改提供了方便的控制,因此可以进行诸如线性到Zigzag(LZ)的过渡。在此类研究中,陷阱的世俗频率是限制临界点(CP)稳定性的关键因素。在本文中,我们实施了世俗的频率稳定,包括在陷阱电极附近的RF电压的主动反馈稳定,并在横向电位和轴向电势方面实现了超过200秒的5〜ppm的稳定性。为了评估两个方向上陷阱电位的长期稳定性的综合稳定性,我们测量了CP附近的曲折(ZZ)模式频率,在CP附近,在两个陷阱方向上不稳定性的影响大大扩增。该方案也抑制了有限光谱窗口内的短期噪声,这是根据在不同频率下用Ramsey Fringes测得的ZZ模式的偏移速率所推断的。我们还确定,世俗频率稳定性的局限性主要来自电压分隔符和RF检测器的不完美温度不敏感性,因此,实验室温度稳定性的改善对稳定陷阱频率有很大帮助。
An array of ions in a linear radio-frequency (RF) Paul trap is a good candidate for investigating structural phase transitions, such as the linear-to-zigzag (LZ) transition, due to the convenient control provided by modification of the trap confinement strength. In such studies, the trap secular frequencies are a key factor that limits the stability of the critical point (CP). In this paper, we implement secular-frequency stabilization, including active feedback stabilization of the RF voltage near the trap electrodes, and achieve a stability of better than 5~ppm over 200~s for both transverse and axial potentials. To evaluate the combined long-term stability of the trap potential in both directions, we measure the zigzag (ZZ) mode frequency near the CP, where the effect of instability in both trap directions is substantially amplified. The short-term noise within a limited spectral window is also suppressed by this scheme, as inferred from decoherence rates of the ZZ mode measured at different frequencies with Ramsey fringes. We also identify that the limitation of the secular frequency stability is mainly from the imperfect temperature insensitivity of voltage dividers and RF detectors, and as a result improvement of lab temperature stability is of great help for stabilizing the trap frequency.