My dissertation has now been published. We use NV defect centers as quantum sensors to study magnons in magnetic films and explain the results with micromagnetic simulations.
There is also content that may be of general interest like the discussion of magnetism in Chapter 2 as well as the microscopy techniques discussed in Chapter 4. Check it out :)
https://t.co/8R7QwZ7DCQ
Our latest paper has been published in the Journal of Applied Physics. They have featured it as an ‘Editor’s Pick’. Check it out please! Also, you can download the PDF now while it’s free.
@PhysicsCWRU@qnextquantum@CWRUartsci
https://t.co/CLIcBom42n
@JimKakalios@AIsakovic1 I remember taking a great course at MN about 20 yrs ago, Waves, Optics, and Relativity that included fluid dynamics. Are you still offering that?
Starting Monday, 11/6, Case Quantum Computing Club is hosting a Quantum Entrepreneurship Week! There will be six days of events, including a final Pitch Contest. No experience in #QuantumComputing or #Entrepreneurship is needed! See you there! #CWRU@cwru@CWRUartsci
Come join us for the Pumpkin Drop on Mon 10/30 @ 12:35pm outside of Strosacker for our annual test of Newton's law of universal gravitation! Pumpkin pie and cider will be provided for all! 🥧🍂
#cwru@cwru@CWRUartsci
@AIsakovic1 In our recent paper, we showed how that structure (the Tonnetz, first described by Euler) can emerge in a quenched lattice of tones. (Fig 6 shows that graph, though in a less 3D rendering). https://t.co/Pfo7o4uzN6
Led by physics’ Jesse Berezovsky, a team of researchers including Shulei Zhang and Xiao-Xiao Zhang, have received a $1 million National Science Foundation grant to investigate magnetic materials through quantum sensing. https://t.co/PXcct2wfP9
@gravity_levity I felt the same, but for me a part of it was that I believe you can’t do science in this shoddy way, and it would have set a bad precedent if they had lucked out in this case and discovered something without the rigor I require of myself and my students.
@yishan 2/2 (see for example levitating frog) SC are perfectly diamagnetic (magnetization completely cancels the field inside). Videos that have been circulating show strong diamagnetism. Necessary but not sufficient proof for SC.
@yishan Iron filings are ferromagnetic (magnetization aligns with magnetic field). They stand up because their shape constrains the magnetization to be along the long axis. Many other materials are diamagnetic (magnetization aligns against field), but usually weakly.