论文标题
高分辨率光谱和单光谱rydberg激发可重新配置的ytterbium tweezer阵列利用亚稳态
High-resolution spectroscopy and single-photon Rydberg excitation of reconfigurable ytterbium atom tweezer arrays utilizing a metastable state
论文作者
论文摘要
We present an experimental system for Rydberg tweezer arrays with ytterbium (Yb) atoms featuring internal state manipulation between the ground ${}^1$S$_0$ and the metastable ${}^3$P$_2$ states, and single-photon excitation from the ${}^3$P$_2$ to Rydberg states.在实验中,单个Yb原子被困在光学镊子的二维阵列中,并通过荧光成像检测到使用氧化$ {}^1 $ s $ s $ _0 \ leftrightArrow {}^3 $ p $ _1 $转移,并由Free freect-Freep fyect-Freem atom atom areation areath reffack forefack forefack forefack forefack forefabcement。我们成功地执行了高分辨率$ {}^1 $ s $ _0 \ leftrightArrow {}^3 $ p $ _2 $状态光谱,用于单个原子,展示了此超级方向过渡的实用性。我们进一步从$ {}^3 $ p $ _2 $向Rydberg表示单个原子进行单光量激发,这是有效Rydberg激发的关键。我们还对一系列D状态的复杂能量结构进行系统的测量,包括新观察到的$ {}^3 $ d $ _3 $状态。开发的系统显示了使用单YB原子对量子模拟和计算的未来实验的可行性。
We present an experimental system for Rydberg tweezer arrays with ytterbium (Yb) atoms featuring internal state manipulation between the ground ${}^1$S$_0$ and the metastable ${}^3$P$_2$ states, and single-photon excitation from the ${}^3$P$_2$ to Rydberg states. In the experiments, single Yb atoms are trapped in two-dimensional arrays of optical tweezers and are detected by fluorescence imaging with the intercombination ${}^1$S$_0 \leftrightarrow {}^3$P$_1$ transition, and the defect-free single atom arrays are prepared by the rearrangement with the feedaback. We successfully perform high-resolution ${}^1$S$_0\leftrightarrow {}^3$P$_2$ state spectroscopy for the single atoms, demonstrating the utilities of this ultranarrow transition. We further perform single-photon excitation from the ${}^3$P$_2$ to Rydberg states for the single atoms, which is a key for the efficient Rydberg excitation. We also perform a systematic measurement of a complex energy structure of a series of D states including newly observed ${}^3$D$_3$ states. The developed system shows feasibility of future experiments towards quantum simulations and computations using single Yb atoms.