Qudit-Based Spectroscopy for Measurement and Control of Nuclear-Spin Qubits in Silicon Carbide

被引:3
作者
Hesselmeier, Erik [1 ,2 ]
Kuna, Pierre [1 ,2 ]
Takacs, Istvan [3 ,4 ]
Ivady, Viktor [3 ,4 ]
Knolle, Wolfgang [6 ]
Son, Nguyen Tien [5 ]
Ghezellou, Misagh [5 ]
Ul-Hassan, Jawad [5 ]
Dasari, Durga [1 ,2 ]
Kaiser, Florian [7 ,8 ]
Vorobyov, Vadim [1 ,2 ]
Wrachtrup, Joerg [1 ,2 ,9 ]
机构
[1] Univ Stuttgart, Inst Phys 3, IQST, Stuttgart, Germany
[2] Univ Stuttgart, Res Ctr SCoPE, Stuttgart, Germany
[3] Eotvos Lorand Univ, Egyet Ter 1-3, H-1053 Budapest, Hungary
[4] MTA ELTE Lendulet Momentum NewQubit Res Grp, Pazmany Peter Setany 1-A, H-1117 Budapest, Hungary
[5] Linkoping Univ, Dept Phys Chem & Biol, Olaus Magnus vag, S-58330 Linkoping, Sweden
[6] Leibniz Inst Surface Engn IOM, Dept Sensor Surfaces & Funct Interfaces, Permoserstr 15, D-04318 Leipzig, Germany
[7] Luxembourg Inst Sci & Technol LIST, Mat Res & Technol MRT Dept, L-4422 Belvaux, Luxembourg
[8] Univ Luxembourg, 41 Rue Brill, L-4422 Belvaux, Luxembourg
[9] Max Planck Inst Solid State Phys, Heisenbergstr 1, D-70569 Stuttgart, Germany
基金
瑞典研究理事会;
关键词
MAGNETIC-RESONANCE; QUANTUM; READOUT;
D O I
10.1103/PhysRevLett.132.090601
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Nuclear spins with hyperfine coupling to single electron spins are highly valuable quantum bits. Here we probe and characterize the particularly rich nuclear-spin environment around single silicon vacancy color centers (V2) in 4H-SiC. By using the electron spin-3=2 qudit as a four level sensor, we identify several sets of 29Si and 13C nuclear spins through their hyperfine interaction. We extract the major components of their hyperfine coupling via optical detected nuclear magnetic resonance, and assign them to shells in the crystal via the density function theory simulations. We utilize the ground-state level anticrossing of the electron spin for dynamic nuclear polarization and achieve a nuclear-spin polarization of up to 98 + 6%. We show that this scheme can be used to detect the nuclear magnetic resonance signal of individual spins and demonstrate their coherent control. Our work provides a detailed set of parameters and first steps for future use of SiC as a multiqubit memory and quantum computing platform.
引用
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页数:7
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