Pritzker School of Molecular Engineering, University of Chicago, Chicago, Illinois 60615, United States.
Center for Molecular Engineering and Materials Science Division, Argonne National Laboratory, Lemont, Illinois 60439, United States.
Nano Lett. 2021 Dec 22;21(24):10392-10399. doi: 10.1021/acs.nanolett.1c03703. Epub 2021 Dec 13.
Color centers in diamond are widely explored as qubits in quantum technologies. However, challenges remain in the effective and efficient integration of these diamond-hosted qubits in device heterostructures. Here, nanoscale-thick uniform diamond membranes are synthesized via "smart-cut" and isotopically (C) purified overgrowth. These membranes have tunable thicknesses (demonstrated 50 to 250 nm), are deterministically transferable, have bilaterally atomically flat surfaces ( ≤ 0.3 nm), and bulk-diamond-like crystallinity. Color centers are synthesized via both implantation and in situ overgrowth incorporation. Within 110-nm-thick membranes, individual germanium-vacancy (GeV) centers exhibit stable photoluminescence at 5.4 K and average optical transition line widths as low as 125 MHz. The room temperature spin coherence of individual nitrogen-vacancy (NV) centers shows Ramsey spin dephasing times () and Hahn echo times () as long as 150 and 400 μs, respectively. This platform enables the straightforward integration of diamond membranes that host coherent color centers into quantum technologies.
金刚石中的色心被广泛探索作为量子技术中的量子比特。然而,在将这些金刚石基质中的量子比特有效地集成到器件异质结构中仍然存在挑战。在这里,通过“智能切割”和同位素(C)纯化外延生长合成了纳米级厚度均匀的金刚石膜。这些膜具有可调厚度(已证明为 50 至 250nm),可以确定性地转移,具有双边原子级平坦表面(≤0.3nm)和类似体金刚石的结晶度。色心通过注入和原位外延生长结合合成。在 110nm 厚的膜内,单个锗空位(GeV)中心在 5.4K 下表现出稳定的光致发光,平均光学跃迁线宽低至 125MHz。单个氮空位(NV)中心的室温自旋相干性表现出长达 150 和 400μs 的 Ramsey 自旋退相时间(τ)和 Hahn 回波时间(τ)。该平台可轻松地将具有相干色心的金刚石膜集成到量子技术中。