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Polar Metals: Principles and Prospects AITranslate

aterials theory group, eth zürich;aterials theory group, eth zürich
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Publisher: Elsevier
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Abstract AITranslate

We review the class of materials known as polar metals, in which polarity and metallicity coexist in the same phase. While the notion of polar metals was first invoked more than 50 years ago, their practical realization has proved challenging since the itinerant carriers required for metallicity tend to screen any polarization. Huge progress has been made in the last decade, with many mechanisms for combining polarity and metallicity proposed and the first examples, LiOsO3 and WTe2, identified experimentally. The availability of polar metallic samples has opened a new paradigm in polar metal research, with implications in the fields of topology, ferroelectricity, magnetoelectricity, spintronics, and superconductivity. Here, we review the principles and techniques that have been developed to design and engineer polar metals and describe some of their interesting properties, with a focus on the most promising directions for future work.

KeyWords AITranslate

polar metal ferroelectrics polarization perovskites improper ferroelectricity
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Basic Information:

DOI:https://doi.org/10.1146/annurev-matsci-080921-105501

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Citation Information:

We review the class of materials known as polar metals, in which polarity and metallicity coexist in the same phase. While the notion of polar metals was first invoked more than 50 years ago, their practical realization has proved challenging since the itinerant carriers required for metallicity tend to screen any polarization. Huge progress has been made in the last decade, with many mechanisms for combining polarity and metallicity proposed and the first examples, LiOsO3 and WTe2, identified experimentally. The availability of polar metallic samples has opened a new paradigm in polar metal research, with implications in the fields of topology, ferroelectricity, magnetoelectricity, spintronics, and superconductivity. Here, we review the principles and techniques that have been developed to design and engineer polar metals and describe some of their interesting properties, with a focus on the most promising directions for future work.

quote

GB/T 7714-2015 [1] Sayantika Bhowal, Nicola A. Spaldin. Annual Review of Materials Research, 2023(53). DOI:10.1146/annurev-matsci-080921-105501.
MLA [1] Sayantika Bhowal, and Nicola A. Spaldin. Annual Review of Materials Research, no. 53, 2023, https://doi.org/10.1146/annurev-matsci-080921-105501.
APA [1] Sayantika Bhowal, & Nicola A. Spaldin. (2023). Annual Review of Materials Research(53). https://doi.org/10.1146/annurev-matsci-080921-105501
IEEE [1] Sayantika Bhowal and Nicola A. Spaldin, Annual Review of Materials Research, no. 53, 2023, doi: 10.1146/annurev-matsci-080921-105501. keywords: {polar metal;ferroelectrics;polarization;perovskites;improper ferroelectricity}