Zhang Jingfu, Shim Jeong Hyun, Niemeyer Ingo, Taniguchi T, Teraji T, Abe H, Onoda S, Yamamoto T, Ohshima T, Isoya J, Suter Dieter
Fakultät Physik, Technische Universität Dortmund, D-44221 Dortmund, Germany.
National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
Phys Rev Lett. 2013 Jun 14;110(24):240501. doi: 10.1103/PhysRevLett.110.240501. Epub 2013 Jun 11.
Quantum adiabatic passages can be greatly accelerated by a suitable control field, called a counter-diabatic field, which varies during the scan through resonance. Here, we implement this technique on the electron spin of a single nitrogen-vacancy center in diamond. We demonstrate two versions of this scheme. The first follows closely the procedure originally proposed by Demirplak and Rice [J. Phys. Chem. A 107, 9937 (2003)]. In the second scheme, we use a control field whose amplitude is constant but whose phase varies with time. This version, which we call the rapid-scan approach, allows an even faster passage through resonance and therefore makes it applicable also for systems with shorter decoherence times.
通过一个合适的控制场(称为反绝热场),量子绝热通道可以被极大地加速,该控制场在扫描通过共振时会发生变化。在这里,我们在金刚石中单个氮空位中心的电子自旋上实现了这一技术。我们展示了该方案的两个版本。第一个版本紧密遵循Demirplak和Rice最初提出的程序[《物理化学杂志A》107, 9937 (2003)]。在第二个方案中,我们使用一个振幅恒定但相位随时间变化的控制场。我们将这个版本称为快速扫描方法,它允许更快地通过共振,因此也适用于退相干时间较短的系统。