Wafer-Scale MgB2 Superconducting Devices

被引:1
|
作者
Kim, Changsub [1 ]
Bell, Christina [1 ,2 ]
Evans, Jake M. [3 ]
Greenfield, Jonathan [1 ,4 ]
Batson, Emma [5 ]
Berggren, Karl K. [5 ]
Lewis, Nathan S. [3 ]
Cunnane, Daniel P. [1 ]
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
[2] Arizona State Univ, Dept Phys, Tempe, AZ 85287 USA
[3] CALTECH, Div Chem & Chem Engn, Pasadena, CA 91125 USA
[4] Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ 85287 USA
[5] MIT, Dept Elect Engn & Comp Sci, Cambridge, MA 02139 USA
基金
美国国家科学基金会; 美国国家航空航天局;
关键词
MgB2; kinetic inductance; superconductingdevices; wafer-scale; thin films; highfrequency; high-T-c; THIN-FILMS; DEPOSITION; BAND; THERMODYNAMICS; FABRICATION;
D O I
10.1021/acsnano.4c11001
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Progress in superconducting device and detector technologies over the past decade has realized practical applications in quantum computers, detectors for far-infrared telescopes, and optical communications. Superconducting thin-film materials, however, have remained largely unchanged, with aluminum still being the material of choice for superconducting qubits and niobium compounds for high-frequency/high kinetic inductance devices. Magnesium diboride (MgB2), known for its highest transition temperature (T-c = 39 K) among metallic superconductors, is a viable material for elevated temperature and higher frequency superconducting devices moving toward THz frequencies. However, difficulty in synthesizing wafer-scale thin films has prevented implementation of MgB2 devices into the application base of superconducting electronics. Here, we report ultrasmooth (<0.5 nm root-mean-square roughness) and uniform MgB2 thin (<100 nm) films over 100 mm in diameter and present prototype devices fabricated with these films demonstrating key superconducting properties including an internal quality factor over 104 at 4.5 K and high tunable kinetic inductance in the order of tens of pH/sq in a 40 nm thick film. This advancement will enable development of elevated temperature, high-frequency superconducting quantum circuits, and devices.
引用
收藏
页码:27782 / 27792
页数:11
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