Single-Crystal Growth of a Cuprate Superconductor with the Highest Critical Temperature


2024-5-20

JPS Hot Topics 4, 015

https://doi.org/10.7566/JPSHT.4.015

© The Physical Society of Japan

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Single-Crystal Growth and Characterization of Cuprate Superconductor (Hg,Re)Ba2Ca2Cu3O8
(JPSJ Editors' Choice)

Yutaro Mino, Shigeyuki Ishida, Junichiro Kato, Shungo Nakagawa, Takanari Kashiwagi, Takahiro Nozue, Nao Takeshita, Kunihiro Kihou, Chul-Ho Lee, Taichiro Nishio, and Hiroshi Eisaki
J. Phys. Soc. Jpn. 93, 044707 (2024) .

Millimeter-sized single crystals of a trilayer cuprate superconductor (Hg,Re)Ba2Ca2Cu3O8+δ that exhibits the highest superconducting transition temperature under ambient pressure, were grown reproducibly and safely.

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Since the discovery of high critical temperature (high-Tc) superconductivity in cuprates in 1986, numerous experimental and theoretical research have been conducted to elucidate this mechanism. However, the reason for an extremely high Tc has not yet been completely understood. One approach to understanding the high-Tcmechanism is to investigate the physical properties of the material with the highest Tc and determine the essential parameters for realizing a high Tc. Among high-Tc cuprates, Hg-based cuprates with three CuO2 layers, HgBa2Ca2Cu3O8+d (Hg-1223), have the highest Tc above 130 K at ambient pressure.

However, at present, information on the physical properties of Hg-1223 is insufficient because of the lack of high-quality large single crystals of Hg-1223. One reason for this lack may be the nature of Hg; that is, it is poisonous and has high vapor pressure. Moreover, because Hg-1223 is chemically unstable at high temperatures and difficult to obtain the phase, the range of chemical compositions and temperatures at which single crystals can be grown is extremely narrow, causing difficulty in growing Hg-1223 single crystals with good reproducibility.

Accordingly, we carefully examined earlier studies on the single crystal growth of Hg-1223 and determined the key factors for obtaining large single crystals reproducibly and safely. We employed an explosion-proof stainless-steel container to control the high pressure of the Hg vapor at high temperatures to ensure safe crystal growth.

We attempted crystal growth more than 100 times and established a method for growing Re-doped Hg-1223 ((Hg,Re)1223) single crystals using the self-flux method by optimizing the growth conditions. Under the optimal conditions, large single crystals with sizes up to 1 × 1 × 0.04 mm3were obtained, and crystals with sizes of approximately 0.8 × 0.8 mm2in the ab-plane area were obtained with good reproducibility. We expect that further research using Hg-1223 single crystals will provide clues to understand the high-Tc mechanism in cuprates.

Written by Shigeyuki Ishida on behalf of all authors.

Single-Crystal Growth and Characterization of Cuprate Superconductor (Hg,Re)Ba2Ca2Cu3O8
(JPSJ Editors' Choice)

Yutaro Mino, Shigeyuki Ishida, Junichiro Kato, Shungo Nakagawa, Takanari Kashiwagi, Takahiro Nozue, Nao Takeshita, Kunihiro Kihou, Chul-Ho Lee, Taichiro Nishio, and Hiroshi Eisaki
J. Phys. Soc. Jpn. 93, 044707 (2024) .

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