Full electrostatic control of quantum interference in an extended trenched Josephson junction
被引:17
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作者:
Guiducci, Stefano
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CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Guiducci, Stefano
[1
,2
]
Carrega, Matteo
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机构:
CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Carrega, Matteo
[1
,2
]
Taddei, Fabio
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机构:
CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Taddei, Fabio
[1
,2
]
Biasiol, Giorgio
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机构:
IOM CNR, Lab TASC, Area Sci Pk, I-34149 Trieste, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
机构:
CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Beltram, Fabio
[1
,2
]
Heun, Stefan
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机构:
CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, ItalyCNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
Heun, Stefan
[1
,2
]
机构:
[1] CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
[2] Scuola Normale Super Pisa, Piazza San Silvestro 12, I-56127 Pisa, Italy
[3] IOM CNR, Lab TASC, Area Sci Pk, I-34149 Trieste, Italy
Hybrid semiconductor/superconductor devices constitute an important platform for a wide range of applications, from quantum computing to topological-state-based architectures. Here, we demonstrate full modulation of the interference pattern in a superconducting interference device with two parallel islands of ballistic InAs quantum wells separated by a trench, by acting independently on two side gates. This so far unexplored geometry enables us to tune the device with high precision from a SQUID-like to a Fraunhofer-type behavior simply by electrostatic gating, without the need for an additional in-plane magnetic field. These measurements are successfully analyzed within a theoretical model of an extended tunnel Josephson junction, taking into account the focusing factor of the setup. The impact of these results on the design of novel devices is discussed.