Type-II pumping beyond resonance principle: From energetic to geometric rules
Abstract
Conventionally, pumping relies on energetic resonance: energy quanta matches the gap . Under linear approximation, this is known as the Fermi golden rule (FGR). However, this principle becomes challenging to apply in the "0/0" limit, where simultaneously. In "0/0" scenarios, such as topological phase transition (TPT), a type-II pumping, geometric pumping (GP), is recognized subject to geometric rules, distinguished from type-I dictated by FGR. Type-I features an "arrow of energy", sending particles higher in energy, reflected by FGR's dependence on Fermi distribution (probabilities of valence and conduction bands). While GP is non-directional, its probability relies on instead, a key signature for detection. In this work, we address: (1) the concept of GP; (2) its features of fractionality, irreversibility, and dependence on TPT; (3) experimental detection with ultra-fast spectrum in coherent phonon driving of ZrTe.
Keywords
Cite
@article{arxiv.2408.01282,
title = {Type-II pumping beyond resonance principle: From energetic to geometric rules},
author = {B. Q. Song and J. D. H. Smith and Y. X. Yao and J. Wang},
journal= {arXiv preprint arXiv:2408.01282},
year = {2024}
}
Comments
25 pages, 7 figures