Superconductivity found in meteorites

Author:

Wampler James,Thiemens Mark,Cheng Shaobo,Zhu Yimei,Schuller Ivan K.

Abstract

Meteorites can contain a wide range of material phases due to the extreme environments found in space and are ideal candidates to search for natural superconductivity. However, meteorites are chemically inhomogeneous, and superconducting phases in them could potentially be minute, rendering detection of these phases difficult. To alleviate this difficulty, we have studied meteorite samples with the ultrasensitive magnetic field modulated microwave spectroscopy (MFMMS) technique [J. G. Ramírez, A. C. Basaran, J. de la Venta, J. Pereiro, I. K. Schuller,Rep. Prog. Phys.77, 093902 (2014)]. Here, we report the identification of superconducting phases in two meteorites, Mundrabilla, a group IAB iron meteorite [R. Wilson, A. Cooney,Nature213, 274–275 (1967)] and GRA 95205, a ureilite [J. N. Grossman,Meteorit. Planet. Sci.33, A221–A239 (1998)]. MFMMS measurements detected superconducting transitions in samples from each, above 5 K. By subdividing and remeasuring individual samples, grains containing the largest superconducting fraction were isolated. The superconducting grains were then characterized with a series of complementary techniques, including vibrating-sample magnetometry (VSM), energy-dispersive X-ray spectroscopy (EDX), and numerical methods. These measurements and analysis identified the likely phases as alloys of lead, indium, and tin.

Funder

Air Force Office of Scientific Research

Department of Energy, Office of Basic Scientific Research

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

Cited by 25 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Nodal superconductivity in miassite Rh17S15;Communications Materials;2024-02-17

2. Meteorite Mineralogy;CAMB PLANET;2021-08-05

3. Plate Section (PDF Only);Meteorite Mineralogy;2021-08-05

4. Index;Meteorite Mineralogy;2021-08-05

5. References;Meteorite Mineralogy;2021-08-05

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