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Performance Improvements for the NIST 1 V Josephson Arbitrary Waveform Synthesizer

机译:NIST 1 V Josephson任意波形合成器的性能改进

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The performance of the NIST Josephson arbitrary waveform synthesizer has been improved such that it generates a root-mean-square (rms) output voltage of 1 V with an operating current range greater than 2 mA. Our previous 1 V JAWS circuit achieved this same maximum voltage over a current range of 0.4 mA by operating every Josephson junction in its quantum state. The newest circuit synthesizes 1 V waveforms with the junctions operating in the quantum state. The voltage per array is doubled because the number of junctions in each array was doubled through the use of improved microwave circuit designs that increased the bias uniformity to the junctions. We describe the circuit improvements and device operation, and we demonstrate the system capabilities by showing measured spectra of a 1 Hz sine wave and a dual-tone waveform. With only two arrays of the new circuit, we also synthesized a 128 mV sine wave without a compensation bias signal, which is one of the bias signals required for achieving 1 V. This is the same rms output voltage achieved with the previous circuit using four arrays.
机译:NIST Josephson任意波形合成器的性能已得到改善,因此它产生的均方根(rms)输出电压为1 V,工作电流范围大于2 mA。我们以前的1 V JAWS电路通过使每个约瑟夫森结处于其量子态而在0.4 mA的电流范围内实现了相同的最大电压。最新的电路以处于量子状态的结来合成1 V波形。每个阵列的电压增加了一倍,这是因为通过使用改进的微波电路设计可以增加每个结的偏置均匀性,从而使每个阵列中的结数增加了一倍。我们描述了电路的改进和器件的运行,并通过显示1 Hz正弦波和双音波形的频谱展示了系统的功能。仅使用新电路的两个阵列,我们还合成了一个无补偿偏置信号的128 mV正弦波,该信号是实现1 V所需的偏置信号之一。这与使用4个前一电路实现的均方根输出电压相同数组。

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