We found a match
Your institution may have access to this item. Find your institution then sign in to continue.
- Title
Multiprocessing Quantum Computing through Hyperfine Couplings in Endohedral Fullerene Derivatives.
- Authors
Fu, Peng‐Xiang; Zhou, Shen; Liu, Zheng; Wu, Cong‐Hui; Fang, Yu‐Hui; Wu, Zhi‐Rong; Tao, Xing‐Quan; Yuan, Jia‐Yue; Wang, Ye‐Xin; Gao, Song; Jiang, Shang‐Da
- Abstract
Magnetic molecules have shown great potential in quantum information processing due to the chemical tunablity of their quantum behaviors. Chemical derivatives of endohedral nitrogen fullerenes with long coherence time and rich energy levels were synthesized and studied to demonstrate the ability of multiprocessing in quantum information using electron magnetic resonance. After initialization of the 12‐levelled spin system, subgroups of spin energy levels coursed by the hyperfine couplings can be selectively manipulated. The cooperatively combining of the parallel calculations enabled quantum error correction, increasing the correct rate by up to 17.82 %. Also, different subgroups of transitions divided by hyperfine coupling can be treated as independent qubits, and multi‐task quantum computing were realized by performing Z‐gate and X‐gate simultaneously, which accelerates the overall gating speed.
- Subjects
HYPERFINE coupling; QUANTUM computing; SINGLE molecule magnets; FULLERENE derivatives; FULLERENES; ELECTRON paramagnetic resonance; CHEMICAL processes
- Publication
Angewandte Chemie, 2022, Vol 134, Issue 52, p1
- ISSN
0044-8249
- Publication type
Article
- DOI
10.1002/ange.202212939