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Explores birefringence in optics, polarizing light using materials with two refractive indices, and manipulating polarization states with wave plates and retarders.
Explores polarization effects in e-m waves interacting with matter, including monochromatic waves, velocities in metals, decomposition, birefringence, and stress analysis.
Delves into predicting non-scalar properties beyond energies in scientific machine learning, focusing on dipole moments, polarizability, and dielectric response.
Explores in-situ and ultrafast Lorentz Transmission Electron Microscopy, covering dynamic imaging, observing atoms, charges, spins, lattice dynamics, magnetic skyrmions, and coherent control using laser pulses.