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Breaking symmetry with light: photo-induced chirality in a non-chiral crystal

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arxiv 2407.08491 v1 pith:CS7UNQ7O submitted 2024-07-11 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords chiralityeitherhandednessnon-chiralchiralcrystalexertinducing
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abstract

Chirality is a pervasive form of symmetry that is intimately connected to the physical properties of solids, as well as the chemical and biological activity of molecular systems. However, its control with light is challenging, because inducing chirality in a non-chiral material requires that all mirrors and all roto-inversions be simultaneously broken. Electromagnetic fields exert only oscillatory forces that vanish on average, mostly leading to entropy increase that does not break symmetries, per se. Here, we show that chirality of either handedness can be generated in the non-chiral piezoelectric material BPO$_4$, in which two compensated sub-structures of opposite handedness coexist within the same unit cell. By resonantly driving either one of two orthogonal, doubly degenerate vibrational modes at Terahertz frequency, we rectify the lattice distortion and exert a displacive force onto the crystal. The staggered chirality is in this way uncompensated in either direction, inducing chiral structure with either handedness. The rotary power of the photo-induced phases is comparable to the static value of prototypical chiral alpha-quartz, limited by the strength of the pump laser pulse.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Photo-induced Dynamics and Momentum Distribution of Chiral Charge Density Waves in 1T-TiSe$_{2}$

    cond-mat.str-el 2025-02 conditional novelty 7.0 of 10

    In 1T-TiSe2, left- and right-circularly polarized pump pulses suppress the CDW diffraction peak asymmetrically, with the asymmetry varying across momentum and reversing sign at a mosaic domain.

  2. The 2025 Roadmap to Ultrafast Dynamics: Frontiers of Theoretical and Computational Modelling

    cond-mat.mtrl-sci 2025-01 unverdicted novelty 1.0 of 10

    A community roadmap reviewing the state of theoretical and computational modeling of ultrafast phenomena in quantum materials, with no new research results.

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