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Featured researches published by P Ma.


Advanced Materials | 2017

On-Chip Andreev Devices: Hard Superconducting Gap and Quantum Transport in Ballistic Nb–In0.75Ga0.25As-Quantum-Well–Nb Josephson Junctions

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Yilmaz Gul; I. Farrer; David A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith

A superconducting hard gap in hybrid superconductor-semiconductor devices has been found to be necessary to access topological superconductivity that hosts Majorana modes (non-Abelian excitation). This requires the formation of homogeneous and barrier-free interfaces between the superconductor and semiconductor. Here, a new platform is reported for topological superconductivity based on hybrid Nb-In0.75 Ga0.25 As-quantum-well-Nb that results in hard superconducting gap detection in symmetric, planar, and ballistic Josephson junctions. It is shown that with careful etching, sputtered Nb films can make high-quality and transparent contacts to the In0.75 Ga0.25 As quantum well, and the differential resistance and critical current measurements of these devices are discussed as a function of temperature and magnetic field. It is demonstrated that proximity-induced superconductivity in the In0.75 Ga0.25 As-quantum-well 2D electron gas results in the detection of a hard gap in four out of seven junctions on a chip with critical current values of up to 0.2 µA and transmission probabilities of >0.96. The results, together with the large g-factor and Rashba spin-orbit coupling in In0.75 Ga0.25 As quantum wells, which indeed can be tuned by the indium composition, suggest that the Nb-In0.75 Ga0.25 As-Nb system can be an excellent candidate to achieve topological phase and to realize hybrid topological superconducting devices.


Archive | 2017

Research data supporting "On Chip Andreev Devices: hard Superconducting Gap and Quantum Transport in Ballistic Nb-In0.75Ga0.25As quantum well-Nb Josephson junctions"

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; David A. Ritchie; Hannah J. Joyce; M. J. Kelly; Charles Gordon Smith

Onchip Andreev devices and Ballistic Josephson junctions fabricated, and measured by the authors at the Cavendish Laboratory, University of Cambridge UK, in the period Jan 2016 to April 2017. The measurements were done at low temperature (50 to 800 mK). The experimental methods are described in the associated publication.


Archive | 2018

Aharonov-Bohm type periodic magnetoconductance oscillations in planar and ballistic superconductor-quantum wells Josephson junctions

Kaveh Delfanazari; P Ma; R Puddy; T Yi; M Cao; Y Gul; I. Farrer; D. A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


IEEE Transactions on Applied Superconductivity | 2018

On-chip Hybrid Superconducting-Semiconducting Quantum Circuit

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Carly Richardson; I. Farrer; David A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Bulletin of the American Physical Society | 2018

Periodic Magnetoconductance oscillation in hybrid Nb-2DEG-Nb ballistic Josephson junctions

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; David A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Archive | 2017

On-chip hybrid superconducting-semiconducting circuits for scalable topological quantum computing

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; D. A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Archive | 2017

Proximity induced superconducting properties in high mobility two-dimensional electron gas InGaAs quantum well

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; D. A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Archive | 2017

Hybrid superconducting-semiconducting quantum circuits

Kaveh Delfanazari; P Ma; R Puddy; T Yi; M Cao; Y Gul; I. Farrer; D. A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Archive | 2017

Proximity induced superconducting properties in high mobility two-dimensional electron gas in InGaAs heterostructures

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; D. A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith


Archive | 2017

Invited) Hard superconducting gap in indium gallium arsenide quantum well

Kaveh Delfanazari; R Puddy; P Ma; T Yi; M Cao; Y Gul; I. Farrer; David A. Ritchie; Hannah J. Joyce; M. J. Kelly; C. G. Smith

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M Cao

University of Cambridge

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M. J. Kelly

University of Cambridge

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R Puddy

University of Cambridge

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T Yi

University of Cambridge

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I. Farrer

University of Cambridge

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C. G. Smith

University of Cambridge

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Y Gul

University College London

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