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APS -APS March Meeting 2017 - Event - Silicon based cryogenic platform for the integration of qubit and classical control chips

机译:APS -APS March Meeting 2017-活动-基于硅的低温平台,用于集成qubit和经典控制芯片

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Electrostatically confined electron-spin-qubits proved viable for quantum information processing [1-3]. Yet their up-scaling not only demands improvement of physical qubits, but also the development and cryogenic integration of classical control hardware. Therefore, we created a platform to integrate quantum chips and classical electronics. These multilayer interposer chips incorporate passive circuit elements, high bandwidth coplanar wave guides and interconnects for electron spin resonant qubit control as well as low impedance DC microstrips reducing EM-crosstalk from AC to DC lines. We used the interposer for measurements of a Si/SiGe quantum dot at 30 mK. We also characterized a commercial voltage controlled oszillator (VCO) based on hetero-bipolar transistors [4]. Tunable about 30 GHz it is ideal for electron spin resonant qubit control. Cooled from 300 to 4 K it exhibits a slightly increased output power and frequency, while the phase noise level is constant. The device remains functional up to magnetic fields of 6 T. [1] M.Veldhorst et al. Nature 526(2015) [2] E.Kawakami et al. PNAS 113(2016) [3] K.Takeda et al. Sci.Adv. 2(2016) [4] M.Kucharski et al. Proc. EuMIC (2016)
机译:静电限制的电子自旋量子位被证明可用于量子信息处理[1-3]。然而,它们的扩展不仅需要改进物理量子位,而且还需要经典控制硬件的开发和低温集成。因此,我们创建了一个平台来集成量子芯片和经典电子产品。这些多层插入器芯片集成了无源电路元件,高带宽共面波导和用于电子自旋共振量子位控制的互连以及低阻抗DC微带,可减少从AC到DC线的EM串扰。我们使用中介层在30 mK下测量Si / SiGe量子点。我们还基于异质双极晶体管[4]对商用压控振荡器(VCO)进行了表征。可调谐约30 GHz,是电子自旋共振量子位控制的理想选择。从300 K冷却到4 K,它的输出功率和频率会略有增加,而相位噪声水平却是恒定的。该设备在高达6 T的磁场下仍可正常工作。[1] M.Veldhorst等。 Nature 526(2015)[2] E.Kawakami等。 PNAS 113(2016)[3] K.Takeda等。科学顾问2(2016)[4] M.Kucharski等。进程EuMIC(2016)

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