Institute of Quantum Electronics, ETH Zurich, CH-8093 Zürich, Switzerland.
Phys Rev Lett. 2010 Dec 17;105(25):257402. doi: 10.1103/PhysRevLett.105.257402. Epub 2010 Dec 14.
We measure the strength and the sign of hyperfine interaction of a heavy hole with nuclear spins in single self-assembled quantum dots. Our experiments utilize the locking of a quantum dot resonance to an incident laser frequency to generate nuclear spin polarization. By monitoring the resulting Overhauser shift of optical transitions that are split either by electron or exciton Zeeman energy with respect to the locked transition using resonance fluorescence, we find that the ratio of the heavy-hole and electron hyperfine interactions is -0.09 ± 0.02 in three quantum dots. Since hyperfine interactions constitute the principal decoherence source for spin qubits, we expect our results to be important for efforts aimed at using heavy-hole spins in quantum information processing.
我们测量了单个自组装量子点中重空穴与核自旋的超精细相互作用的强度和符号。我们的实验利用量子点共振锁定到入射激光频率来产生核自旋极化。通过监测共振荧光中相对于锁定跃迁分裂的电子或激子塞曼能的光学跃迁的超精细位移,我们发现三个量子点中重空穴和电子超精细相互作用的比值为-0.09 ± 0.02。由于超精细相互作用是自旋量子位的主要退相干源,我们预计我们的结果对于利用重空穴自旋进行量子信息处理的努力将是重要的。