Brillouin – Mandelstam Light Scattering Spectroscopy: Applications in Phononics and Spintronics - UCR, 2020
41 |
P a g e
Phys. 40, 167–205 (1968).
168.
Huberman, S.
et al. Observation of second sound in graphite at temperatures above 100 K.
Science 364, 375–379 (2019).
169. Lee, S. & Li, X. Hydrodynamic phonon transport: past, present and prospects. in
Nanoscale Energy Transport 1-1-1–26 (IOP
Publishing, 2020).
170. Machida, Y.
et al. Observation of poiseuille flow of phonons in black phosphorus.
Sci.
Adv. 4, eaat3374 (2018).
171. Lee, S., Broido, D., Esfarjani, K. & Chen, G. Hydrodynamic phonon
transport in
suspended graphene.
Nat. Commun. 6, 6290 (2015).
172. Shang, M.-Y., Zhang, C., Guo, Z. & Lü, J.-T. Heat vortex in hydrodynamic phonon
transport of two-dimensional materials.
Sci. Rep. 10, 8272 (2020).
173. Aytan, E.
et al. Spin-phonon coupling in antiferromagnetic nickel oxide.
Appl. Phys. Lett.
111, 252402 (2017).
174. Sandercock, J. R. & Wettling, W. Light scattering from
thermal acoustic magnons in
yttrium iron garnet.
Solid State Commun. Do'stlaringiz bilan baham: