Zhao Luheng, Lee Michael Dao Kang, Aliyu Mohammad Mujahid, Loh Huanqian
Centre for Quantum Technologies, National University of Singapore, 117543, Singapore, Singapore.
Department of Physics, National University of Singapore, 117542, Singapore, Singapore.
Nat Commun. 2023 Nov 6;14(1):7128. doi: 10.1038/s41467-023-42899-8.
The Rydberg blockade is a key ingredient for entangling atoms in arrays. However, it requires atoms to be spaced well within the blockade radius, which limits the range of local quantum gates. Here we break this constraint using Floquet frequency modulation, with which we demonstrate Rydberg-blockade entanglement beyond the traditional blockade radius and show how the enlarged entanglement range improves qubit connectivity in a neutral atom array. Further, we find that the coherence of entangled states can be extended under Floquet frequency modulation. Finally, we realize Rydberg anti-blockade states for two sodium Rydberg atoms within the blockade radius. Such Rydberg anti-blockade states for atoms at close range enables the robust preparation of strongly-interacting, long-lived Rydberg states, yet their steady-state population cannot be achieved with only the conventional static drive. Our work transforms between the paradigmatic regimes of Rydberg blockade versus anti-blockade and paves the way for realizing more connected, coherent, and tunable neutral atom quantum processors with a single approach.
里德堡阻塞是在阵列中纠缠原子的关键要素。然而,它要求原子在阻塞半径内有良好的间距,这限制了局部量子门的范围。在这里,我们利用弗洛凯频率调制打破了这一限制,通过这种调制我们展示了超越传统阻塞半径的里德堡阻塞纠缠,并展示了扩大的纠缠范围如何改善中性原子阵列中的量子比特连通性。此外,我们发现纠缠态的相干性可以在弗洛凯频率调制下得到扩展。最后,我们在阻塞半径内实现了两个钠里德堡原子的里德堡反阻塞态。这种近距离原子的里德堡反阻塞态能够稳健地制备强相互作用、长寿命的里德堡态,然而仅用传统的静态驱动无法实现其稳态布居。我们的工作在里德堡阻塞与反阻塞的典型机制之间进行了转换,并为用单一方法实现更连通、更相干且可调谐的中性原子量子处理器铺平了道路。