Glass-like anomalies and unconventional thermoelectric transport in chimney ladder crystals

Стеклоподобные аномалии и нетипичный термоэлектрический перенос в кристаллах типа chimney ladder
Jie Ma, Xi Chen, Matteo Baggioli, F. M. Grosche, Jiong Yang, Yasong Wu, Srinivas V. Mandyam, Tian‐Long Xia, Weicen Dong, Xiaoxian Yan, Binru Zhao, Chunhao Su, Elen Duverger-Nédellec, Junfa Lin, Zhiying Zhao, Hui Xing
2026-07-02

Ru2Sn3boson peakchimney ladder crystalslow-energy optical phononsphonon hybridization
Nowotny chimney ladder crystals combine features of ordered crystals and amorphous solids, making them attractive thermoelectric materials because of their intrinsically low thermal conductivity. We investigate the intermetallic compound Ru2Sn3 and show that, despite its crystalline order, its heat capacity exhibits a boson-peak-like glassy anomaly at 8-14 K. Combining experiments with first-principles calculations and molecular dynamics simulations, we trace this behavior to low-energy optical phonons emerging from the chimney ladder structure. These modes strongly couple to acoustic phonons, producing hybridization and avoided crossings that reshape the vibrational spectrum and cause the hybridized acoustic branches to contribute directly to the anomaly. Thermoelectric measurements reveal additional glass-like signatures linked to these excitations, while the electrical resistivity displays an extended linear temperature dependence and an anomalously large quadratic contribution at low temperatures. A simple theoretical model based on electron scattering by overdamped phonons qualitatively accounts for these observations. The authors show that the hybridization of low-energy optical and acoustic phonons in the chimney ladder crystal Ru2Sn3 gives rise to glass-like thermodynamic and transport anomalies and anomalous thermoelectric behavior.
1
A simple theoretical model of electron scattering by overdamped phonons qualitatively accounts for the observed transport anomalies.
2
Crystalline Ru2Sn3 exhibits a boson-peak-like glassy heat capacity anomaly centered at 8–14 K despite its ordered structure.
3
Electrical resistivity shows extended linear temperature dependence and an anomalously large quadratic term at low temperatures.
4
First-principles calculations and molecular dynamics identify low-energy optical phonons from the chimney ladder structure as the origin of the anomaly.
5
Hybridized acoustic branches contribute directly to the glass-like heat capacity anomaly.
6
Strong coupling and hybridization between low-energy optical and acoustic phonons produce avoided crossings that reshape the vibrational spectrum.
7
Thermoelectric measurements show additional glass-like signatures linked to these hybridized excitations.

Chimney ladder intermetallic crystal Ru2Sn3

Hybridization of low-energy optical and acoustic phonons leading to glass-like vibrational anomalies (boson-peak-like heat-capacity feature), altered phonon–phonon coupling and scattering, and resulting unconventional thermoelectric and electrical transport behavior

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2026-07-02
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Jie Ma
Xi Chen
Matteo Baggioli
F. M. Grosche
Jiong Yang
Yasong Wu
Srinivas V. Mandyam
Tian‐Long Xia
Weicen Dong
Xiaoxian Yan
Binru Zhao
Chunhao Su
Elen Duverger-Nédellec
Junfa Lin
Zhiying Zhao
Hui Xing
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