Physikalisch-Technische Bundesanstalt, Bundesallee 100, 38116 Braunschweig, Germany.
Phys Rev Lett. 2012 Mar 2;108(9):097001. doi: 10.1103/PhysRevLett.108.097001. Epub 2012 Feb 27.
We propose a transistorlike circuit including two serially connected segments of a narrow superconducting nanowire joint by a wider segment with a capacitively coupled gate in between. This circuit is made of amorphous NbSi film and embedded in a network of on-chip Cr microresistors ensuring a sufficiently high external electromagnetic impedance. Assuming a virtual regime of quantum phase slips (QPS) in two narrow segments of the wire, leading to quantum interference of voltages on these segments, this circuit is dual to the dc SQUID. Our samples demonstrated appreciable Coulomb blockade voltage (analog of critical current of the SQUIDs) and periodic modulation of this blockade by an electrostatic gate (analog of flux modulation in the SQUIDs). The model of this QPS transistor is discussed.
我们提出了一种晶体管式电路,包括两个串联连接的窄超导纳米线段,由一个较宽的段连接,中间有一个电容耦合门。这个电路是由非晶态 NbSi 薄膜制成的,并嵌入在一组片上 Cr 微电阻器网络中,以确保足够高的外部电磁阻抗。假设在导线的两个窄段中存在虚拟的量子相位滑移(QPS)状态,导致这些段上的电压发生量子干涉,那么这个电路与直流超导量子干涉器(SQUID)对偶。我们的样品表现出相当大的库仑阻塞电压(SQUIDs 的临界电流的模拟),并且通过静电门对这种阻塞进行周期性调制(SQUIDs 中的磁通调制的模拟)。讨论了这种 QPS 晶体管的模型。