5 pages, 4 figuresInternational audienceDiamond is an electrical insulator in its natural form. However, when doped with boron above a critical level (~0.25 at.%) it can be rendered superconducting at low temperatures with high critical fields. Here we present the realization of a micrometer scale superconducting quantum interference device $\mu$-SQUID made from nanocrystalline boron doped diamond (BDD) films. Our results demonstrate that $\mu$-SQUIDs made from superconducting diamond can be operated in magnetic fields as large as 4T independent on the field direction. This is a decisive step towards the detection of quantum motion in a diamond based nanomechanical oscillator
We report on the fabrication and characterization of micrometer-sized superconducting quantum interf...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
As metrology extends toward the nanoscale, a number of potential applications and new challenges ari...
Diamond is an electrical insulator in its natural form. However, when doped with boron above a criti...
Diamond is an electrical insulator in its natural form. However, when doped with boron above a criti...
Nanoscale superconducting quantum interference devices (nano-SQUIDs) with Dayem bridge junctions and...
The widely known allotropes of carbon are graphite, diamond and amorphous carbon. Out of these, in i...
In this work we present the fabrication and characterization of superconducting nano-mechanical reso...
We report on the transport properties of nanostructures made from boron-doped superconducting diamon...
International audienceWe have studied a Superconducting Quantum Interference Device (SQUID) made fro...
As a part of a wide and term project, where quantum micro and nano-electromechanical (MEMS and NEMS)...
In this paper, we report on the transport properties of nanostructured boron doped diamond thin film...
Scanning tunneling topography and spectroscopy are performed below 100 mK on granular nanocrystallin...
Heavily boron-doped, diamond films can become superconducting with critical temperatures T-c well ab...
Boron doped nanocrystalline diamond has intrinsic properties (namely a high young’s modulus to densi...
We report on the fabrication and characterization of micrometer-sized superconducting quantum interf...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
As metrology extends toward the nanoscale, a number of potential applications and new challenges ari...
Diamond is an electrical insulator in its natural form. However, when doped with boron above a criti...
Diamond is an electrical insulator in its natural form. However, when doped with boron above a criti...
Nanoscale superconducting quantum interference devices (nano-SQUIDs) with Dayem bridge junctions and...
The widely known allotropes of carbon are graphite, diamond and amorphous carbon. Out of these, in i...
In this work we present the fabrication and characterization of superconducting nano-mechanical reso...
We report on the transport properties of nanostructures made from boron-doped superconducting diamon...
International audienceWe have studied a Superconducting Quantum Interference Device (SQUID) made fro...
As a part of a wide and term project, where quantum micro and nano-electromechanical (MEMS and NEMS)...
In this paper, we report on the transport properties of nanostructured boron doped diamond thin film...
Scanning tunneling topography and spectroscopy are performed below 100 mK on granular nanocrystallin...
Heavily boron-doped, diamond films can become superconducting with critical temperatures T-c well ab...
Boron doped nanocrystalline diamond has intrinsic properties (namely a high young’s modulus to densi...
We report on the fabrication and characterization of micrometer-sized superconducting quantum interf...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
As metrology extends toward the nanoscale, a number of potential applications and new challenges ari...