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Related papers: Cooper pair splitting in a nanoSQUID geometry at h…

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In a SQUID tuned away from half-integer flux (in units of the superconducting flux quantum), the concurrence of multiple Josephson harmonics and an asymmetry between the junctions leads to the Josephson diode effect -- a nonreciprocal…

Mesoscale and Nanoscale Physics · Physics 2025-11-18 M. Houzet , T. Vakhtel , J. S. Meyer

Majorana bound states are spatially localized superpositions of electron and hole excitations in the middle of a superconducting energy gap. A single qubit can be encoded nonlocally in a pair of spatially separated Majorana bound states.…

Mesoscale and Nanoscale Physics · Physics 2013-07-09 Johan Nilsson , A. R. Akhmerov , C. W. J. Beenakker

Andreev-reflection and tunneling studies have been carried out on a single crystal of underdoped Nd1.85Ce0.15CuO4-d (NCCO) by using Ag, Pt-Ir and Nb tips to clarify the symmetry of its order parameter. Surprisingly, we observed in the NCCO,…

Superconductivity · Physics 2009-10-31 A. Mourachkine

In three-terminal NSN hybrid structures the influence of additional barriers on the nonlocal conductance and on current cross-correlations is studied within a scattering theory. In metallic systems with additional barriers and phase…

Mesoscale and Nanoscale Physics · Physics 2012-11-26 Martina Flöser , Denis Feinberg , Régis Mélin

We investigate the nonlocal thermoelectric transport in a Cooper-pair splitter based on a double-quantum-dot-superconductor three-terminal hybrid structure. We find that the nonlocal coupling between the superconductor and the quantum dots…

Mesoscale and Nanoscale Physics · Physics 2019-02-20 Robert Hussein , Michele Governale , Sigmund Kohler , Wolfgang Belzig , Francesco Giazotto , Alessandro Braggio

We investigate the Josephson effect through a two-level quantum dot with an exchange coupling between two dot electrons. We compute the superconducting phase relationship and construct the phase diagram in the superconducting gap--exchange…

Mesoscale and Nanoscale Physics · Physics 2011-08-25 Minchul Lee , Thibaut Jonckheere , Thierry Martin

The non-dissipative non-linearity of a Josephson junction converts macroscopic superconducting circuits into artificial atoms, enabling some of the best controlled quantum bits (qubits) today. Three fundamental types of superconducting…

Josephson junctions based on semiconductor nanowires are potential building blocks for electrically tunable qubit structures, e.g. the gatemon or the Andreev qubit. However, an actual realization requires the thorough investigation of the…

Mesoscale and Nanoscale Physics · Physics 2022-12-23 Patrick Zellekens , Russell Deacon , Pujitha Perla , Detlev Grützmacher , Mihail Ion Lepsa , Thomas Schäpers , Koji Ishibashi

With the help of the numerical renormalization group method, we theoretically investigate the Josephson phase transition in a parallel junction with one quantum dot embedded in each arm. It is found that in the cases of uniform dot levels…

Mesoscale and Nanoscale Physics · Physics 2018-08-08 Guang-Yu Yi , Xiao-Qi Wang , Cui Jiang , Wei-Jiang Gong

We propose a new holographic model of Josephson junctions (and networks thereof) based on designer multi-gravity, namely multi-(super)gravity theories on products of distinct asymptotically AdS spacetimes coupled by mixed boundary…

High Energy Physics - Theory · Physics 2011-10-07 Elias Kiritsis , Vasilis Niarchos

The electrons forming a Cooper pair in a superconductor can be spatially separated preserving their spin entanglement by means of quantum dots coupled to both the superconductor and independent normal leads. We investigate the…

Mesoscale and Nanoscale Physics · Physics 2019-01-09 Rafael Sánchez , Pablo Burset , Alfredo Levy Yeyati

We solve the problem of an interacting quantum dot embedded in a Josephson junction between two superconductors with finite charging energy described by the transmon (Cooper pair box) Hamiltonian. The approach is based on the flat-band…

Mesoscale and Nanoscale Physics · Physics 2026-04-13 Luka Pavešić , Rok Žitko

We investigate non-linear transport in a double quantum dot connected to two normal electrodes and a central superconducting finger. By this means, we perform a transport spectroscopy of such a system which implements a Cooper pair…

Mesoscale and Nanoscale Physics · Physics 2012-05-10 L. G. Herrmann , P. Burset , W. J. Herrera , F. Portier , P. Roche , C. Strunk , A. Levy Yeyati , T. Kontos

We report the first experimental observation of subgap transport in ferromagnetic insulator/superconductor/insulator/superconductor junctions realized in EuS/Al/AlOx/Al vertical stacks. Differential conductance measurements reveal multiple…

Superconductor/semiconductor hybrid devices have attracted increasing interest in the past years. Superconducting electronics aims to complement semiconductor technology, while hybrid architectures are at the forefront of new ideas such as…

We show how a superconducting region (S) sandwiched between two normal leads (N), in the presence of barriers, can act as a lens for propagating electron and hole waves by virtue of the so- called crossed Andreev reflection (CAR). The CAR…

Superconductivity · Physics 2016-06-23 Hosein Cheraghchi , Hanieh Esmailzadeh , Ali G. Moghaddam

We probe the high frequency emission of a carbon nanotube based Josephson junction and compare it to its DC Josephson current. The AC emission is probed by coupling the carbon nanotube to an on-chip detector (a…

Mesoscale and Nanoscale Physics · Physics 2021-03-31 D. Watfa , R. Delagrange , A. Kadlecová , M. Ferrier , A. Kasumov , H. Bouchiat , R. Deblock

We investigate ac Josephson effect in the resonant tunneling through mesoscopic superconducting junctions. In the presence of microwave irradiation, we show that the trajectory of multiple Andreev reflections can be closed by emitting or…

Mesoscale and Nanoscale Physics · Physics 2010-08-03 Yu Zhu , Qing-feng Sun , Wei Li , Zhong-shui Ma , Tsung-han Lin

Superconducting integrated circuits have demonstrated a tremendous potential to realize integrated quantum computing processors. However, the downside of the solid-state approach is that superconducting qubits suffer strongly from energy…

A microscopic analysis of the superconducting quantum critical point realized via a pair-breaking quantum phase transition is presented. Finite temperature crossovers are derived for the electrical conductivity, which is a key probe of…

Superconductivity · Physics 2007-09-19 N. Shah , A. V. Lopatin