arXiv · 2609.27347
THz-Driven Quantum Ionic Magnetism in a Quantum Paraelectric SrTiO3
Abstract
Magnetic moments carried by rotating ionic motion in crystals are becoming recognized as an important contribution to magnetism, angular momentum transport, and optical activity. However, efficient approaches to their dynamical control are lacking. Here, we report THz-driven generation and optical detection of quantum ionic magnetism in quantum paraelectric SrTiO3. We observe an oscillatory ionic magnetization without a corresponding oscillatory polarization, contradicting from the classical relation M~PXdP/dt while its suppression above the quantum paraelectric regime points to a quantum ionic origin. Analysis shows that this effect results from the beating between quantum ionic eigenstates whose degeneracy is lifted due to the directional symmetry breaking by the THz pulse. The presented approach provides a pathway for the ultrafast control of ionic magnetization in quantum materials for spintronic and thermotronic applications.
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In Hyeok Choi, Sergei Urazhdin, Man Tou Wong, Zi-Jie Liu, Keith A. Nelson. 2026-09-23. THz-Driven Quantum Ionic Magnetism in a Quantum Paraelectric SrTiO3. https://arxiv.org/abs/2609.27347
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