新種の粒子を発見、量子力学を一歩前進させる可能性(Discovery of new class of particles could take quantum mechanics one step further)

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2025-01-08 ブラウン大学

ブラウン大学の研究チームは、新たな量子粒子「分数励起子」を発見しました。これは、分数電荷を持つ準粒子が対を成して形成されるもので、従来のボソンやフェルミオンとは異なる特性を示します。この発見は、量子物理学の理解を深めるだけでなく、将来的には量子コンピューティングの分野での応用が期待されます。

<関連情報>

分数量子ホール効果における励起子 Excitons in the fractional quantum Hall effect

Naiyuan J. Zhang,Ron Q. Nguyen,Navketan Batra,Xiaoxue Liu,Kenji Watanabe,Takashi Taniguchi,D. E. Feldman & J. I. A. Li
Nature  Published:08 January 2025
DOI:https://doi.org/10.1038/s41586-024-08274-3

新種の粒子を発見、量子力学を一歩前進させる可能性(Discovery of new class of particles could take quantum mechanics one step further)

Abstract

Excitons, Coulomb-driven bound states of electrons and holes, are typically composed of integer charges1,2. However, in bilayer systems influenced by charge fractionalization3,4, a more interesting form of interlayer exciton can emerge, in which pairing occurs between constituents that carry fractional charges. Despite numerous theoretical predictions for these fractional excitons5,6,7,8,9,10,11,12,13,14,15,16, their experimental observation has remained unexplored. Here we report transport signatures of excitonic pairing in fractional quantum Hall effect states. By probing the composition of these excitons and their impact on the underlying wavefunction, we discover two new types of quantum phases of matter. One of these can be viewed as the fractional counterpart of the exciton condensate at a total filling of 1, whereas the other involves a more unusual type of exciton that obeys non-bosonic quantum statistics, challenging the standard model of bosonic excitons.

1701物理及び化学
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