Twisted graphene has become the big thing in physics
quantamagazine.org
Twisted graphene has become the big thing in physics
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Re: Twisted graphene has become the big thing in physics
#2It's great that now that regular graphene has become ubiquitous and has delivered on all of its promises to revolutionize tech we have something new to look forward to.
Re: Twisted graphene has become the big thing in physics
#3It's great that now that regular graphene has become ubiquitous and has delivered on all of its promises to revolutionize tech we have something new to look forward to.
It's the future, and always will be :)
Re: Twisted graphene has become the big thing in physics
#4It's great that now that regular graphene has become ubiquitous and has delivered on all of its promises to revolutionize tech we have something new to look forward to.
Is there a list of devices regular graphene has made possible?
Re: Twisted graphene has become the big thing in physics
#5Pardon my interruption but I searched for 'use' or 'usage' and came up empty. Anyone can tell a regular guy why it's a big deal and what are the applications? ta
Re: Twisted graphene has become the big thing in physics
#6Re: Twisted graphene has become the big thing in physics
#7Pardon my interruption but I searched for 'use' or 'usage' and came up empty. Anyone can tell a regular guy why it's a big deal and what are the applications? ta
It seems to have a very real potential to help us learn a great deal about superconductivity.
Re: Twisted graphene has become the big thing in physics
#8Yes. There’s not applicable commercially viable things based on graphene yet. But superconductivity will be a revolution in many ways and especially in computing.
Re: Twisted graphene has become the big thing in physics
#9Pardon my interruption but I searched for 'use' or 'usage' and came up empty. Anyone can tell a regular guy why it's a big deal and what are the applications? ta
Research. It's a relatively simple setup with relatively easy to control properties, that does something really fucking weird. It offers a window into the behavior of other poorly understood superconductors, and that offers the eventual chance of higher temperature or higher magnetic flux superconductors. Either would be revolutionary - room temperature superconductors have obvious applications, but higher flux superconductors would allow better, smaller, cheaper stellarators and tokamaks - opening the door for fusion power.