The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolves with the superconducting phase difference across the junction. Knowledge of the CPR is essential in order to understand the response of a JJ to various external parameters. Despite the rising interest in ultraclean encapsulated graphene JJs, the CPR of such junctions remains unknown. Here, we use a fully gate-tunable graphene superconducting quantum intereference device (SQUID) to determine the CPR of ballistic graphene JJs. Each of the two JJs in the SQUID is made with graphene encapsulated in hexagonal boron nitride. By independently controlling the critical current of the JJs, we can operate the SQUID either in a symmetric or asymmetric ...
We calculate the phase, the temperature and the junction length dependence of the supercurrent for b...
Abstract — We report on the proposed existence and measurement of quantum metastable states in a cur...
This thesis investigates fundamental properties of Josephson junctions embedded in microwave circuit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
The current-phase relation (CPR) of a Josephson junction reveals valuable information about the micr...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
Motivated by a recent experiment directly measuring the current-phase relation (CPR) in graphene und...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
This review discusses the electronic properties and the prospective research directions of supercond...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
We report on short ballistic (SB) Josephson coupling in junctions embedded in a planar heterostructu...
Since the carrier density and resistivity of graphene are heavily dependent on the Fermi level, Jose...
We calculate the phase, the temperature and the junction length dependence of the supercurrent for b...
Abstract — We report on the proposed existence and measurement of quantum metastable states in a cur...
This thesis investigates fundamental properties of Josephson junctions embedded in microwave circuit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
The current-phase relation (CPR) of a Josephson junction reveals valuable information about the micr...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
Motivated by a recent experiment directly measuring the current-phase relation (CPR) in graphene und...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
This review discusses the electronic properties and the prospective research directions of supercond...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
We report on short ballistic (SB) Josephson coupling in junctions embedded in a planar heterostructu...
Since the carrier density and resistivity of graphene are heavily dependent on the Fermi level, Jose...
We calculate the phase, the temperature and the junction length dependence of the supercurrent for b...
Abstract — We report on the proposed existence and measurement of quantum metastable states in a cur...
This thesis investigates fundamental properties of Josephson junctions embedded in microwave circuit...