We show spin lifetimes of 12.6 ns and spin diffusion lengths as long as 30.5 μm in single layer graphene nonlocal spin transport devices at room temperature. This is accomplished by the fabrication of Co/MgO-electrodes on a Si/SiO2 substrate and the subsequent dry transfer of a graphene-hBN-stack on top of this electrode structure where a large hBN flake is needed in order to diminish the ingress of solvents along the hBN-to-substrate interface. Interestingly, long spin lifetimes are observed despite the fact that both conductive scanning force microscopy and contact resistance measurements reveal the existence of conducting pinholes throughout the MgO spin injection/detection barriers. Compared to previous devices, we observe an enhancemen...
Spin transport properties of graphene non‐local spin valve devices are typically determined from Han...
Spin injection and detection is achieved in freely suspended graphene using cobalt electrodes and a ...
Graphene has drawn plenty of attention since its discovery in 2004. Due to its excellent properties,...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
We demonstrate a high-yield fabrication of non-local spin valve devices with room-temperature spin l...
Establishing ultimate spin current efficiency in graphene over industry-standard substrates can faci...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
Spintronics and spin caloritronics in graphene are recently very active fields of research, and this...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Spin transport properties of graphene non‐local spin valve devices are typically determined from Han...
Spin injection and detection is achieved in freely suspended graphene using cobalt electrodes and a ...
Graphene has drawn plenty of attention since its discovery in 2004. Due to its excellent properties,...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
We present a new fabrication method of graphene spin-valve devices that yields enhanced spin and cha...
We demonstrate a high-yield fabrication of non-local spin valve devices with room-temperature spin l...
Establishing ultimate spin current efficiency in graphene over industry-standard substrates can faci...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
Spintronics and spin caloritronics in graphene are recently very active fields of research, and this...
Graphene is an ideal medium for long-distance spin communication in future spintronic technologies. ...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Electronic transport in single or a few layers of graphene is the subject of intense interest at pre...
Spin transport properties of graphene non‐local spin valve devices are typically determined from Han...
Spin injection and detection is achieved in freely suspended graphene using cobalt electrodes and a ...
Graphene has drawn plenty of attention since its discovery in 2004. Due to its excellent properties,...