'Strange metals' point to a whole new way to understand electricity
1–10 of 46 posts
Re: 'Strange metals' point to a whole new way to understand electricity
#2Re: 'Strange metals' point to a whole new way to understand electricity
#3Progress is seeing the cloud from the particles I reckon. I am excited to see practical uses of measuring entanglement to push forward materials research. I’m curious about what other materials have linear changes related to temperature or other inputs, seems uncommon.
Re: 'Strange metals' point to a whole new way to understand electricity
#4Re: 'Strange metals' point to a whole new way to understand electricity
#5Re: 'Strange metals' point to a whole new way to understand electricity
#6IANAP, but I thought that quantum field theory (which isn't incredibly controversial) already treats particles as merely emergent convenient ways to describe common excitations of the fields. I'm surprised it isn't mentioned here at all.
Quasiparticles arise out of a collection of particles, that's why they're emergent
Re: 'Strange metals' point to a whole new way to understand electricity
#7so electrons are just like photons being a wave/particle? The article seems to suggest in strange metals their particle properties are absent and only 'electron field' gradients move, like if electrons exhanged their 'charge'.
Re: 'Strange metals' point to a whole new way to understand electricity
#8Re: 'Strange metals' point to a whole new way to understand electricity
#9IANAP, but I thought that quantum field theory (which isn't incredibly controversial) already treats particles as merely emergent convenient ways to describe common excitations of the fields. I'm surprised it isn't mentioned here at all.
Re: 'Strange metals' point to a whole new way to understand electricity
#10so electrons are just like photons being a wave/particle? The article seems to suggest in strange metals their particle properties are absent and only 'electron field' gradients move, like if electrons exhanged their 'charge'.