F-Hash encodes time-varying volumes into a 4D multi-resolution tesseract grid, reporting 10x to 100x faster convergence and fewer parameters than existing input encodings.
Experimental realization of spin-tensor momentum coupling in ultracold Fermi gases
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
We experimentally realize the spin-tensor momentum coupling (STMC) using the three ground Zeeman states coupled by three Raman laser beams in ultracold atomic system of $^{40}$K Fermi atoms. This new type of STMC consists of two bright-state bands as a regular spin-orbit coupled spin-1/2 system and one dark-state middle band. Using radio-frequency spin-injection spectroscopy, we investigate the energy band of STMC. It is demonstrated that the middle state is a dark state in the STMC system. The realized energy band of STMC may open the door for further exploring exotic quantum matters.
citation-role summary
citation-polarity summary
fields
cs.GR 1years
2025 1verdicts
CONDITIONAL 1roles
background 1polarities
background 1representative citing papers
citing papers explorer
-
F-Hash: Feature-Based Hash Design for Time-Varying Volume Visualization via Multi-Resolution Tesseract Encoding
F-Hash encodes time-varying volumes into a 4D multi-resolution tesseract grid, reporting 10x to 100x faster convergence and fewer parameters than existing input encodings.