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Broad table-like magnetocaloric effect in GdFeCo thin-films for room temperature Ericsson-cycle magnetic refrigeration
We demonstrate magnetocaloric entropy change and compensation temperatures in ferrimagnetic Gdx(Fe10Co90)100−x amorphous thin films with transition metal-rich and rare earth-rich configurations. Thin films are sputtered with same Gd/FeCo elemental ratio at different thicknesses and of various Gd/FeC...
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Published in: | Journal of applied physics 2024-03, Vol.135 (12) |
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creator | Kumar, G. Jagadish Guo, Zengli Gu, Lisha Feng, Jinliang Kamala Bharathi, K. Wang, Ke |
description | We demonstrate magnetocaloric entropy change and compensation temperatures in ferrimagnetic Gdx(Fe10Co90)100−x amorphous thin films with transition metal-rich and rare earth-rich configurations. Thin films are sputtered with same Gd/FeCo elemental ratio at different thicknesses and of various Gd/FeCo ratios at a constant thickness to understand the effect of these two parameters on an antiferromagnetically coupled magnetic sub-lattice system. Temperature- and field-dependent magnetic measurements [M(H,T)] and magnetocaloric studies are performed over a broad range of temperature (70–600 K) by applying a magnetic field of ±15 kOe on sputter deposited 90 nm thin films of Gdx(Fe10Co90)1−x(x = 30,40,50,55,70). The compensation temperature is found to increase with increasing Gd concentration for thin films of the same thickness. A high magnetocaloric entropy change around 0.97 J/kg K (ΔH = ± 15 kOe) is observed for thin films having the same Gd/FeCo elemental ratio. Furthermore, we observed a “table-like” magnetocaloric entropy change in GdFeCo thin film stacks with a high operational window (60 K) at a low applied field for an Ericsson magnetic regenerator around room temperature. The studies will provide important insight into magnetocaloric studies for Ericsson-cycle refrigeration in thin films having antiferromagnetically coupled sublattices. |
doi_str_mv | 10.1063/5.0191497 |
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Jagadish ; Guo, Zengli ; Gu, Lisha ; Feng, Jinliang ; Kamala Bharathi, K. ; Wang, Ke</creator><creatorcontrib>Kumar, G. Jagadish ; Guo, Zengli ; Gu, Lisha ; Feng, Jinliang ; Kamala Bharathi, K. ; Wang, Ke</creatorcontrib><description>We demonstrate magnetocaloric entropy change and compensation temperatures in ferrimagnetic Gdx(Fe10Co90)100−x amorphous thin films with transition metal-rich and rare earth-rich configurations. Thin films are sputtered with same Gd/FeCo elemental ratio at different thicknesses and of various Gd/FeCo ratios at a constant thickness to understand the effect of these two parameters on an antiferromagnetically coupled magnetic sub-lattice system. Temperature- and field-dependent magnetic measurements [M(H,T)] and magnetocaloric studies are performed over a broad range of temperature (70–600 K) by applying a magnetic field of ±15 kOe on sputter deposited 90 nm thin films of Gdx(Fe10Co90)1−x(x = 30,40,50,55,70). The compensation temperature is found to increase with increasing Gd concentration for thin films of the same thickness. A high magnetocaloric entropy change around 0.97 J/kg K (ΔH = ± 15 kOe) is observed for thin films having the same Gd/FeCo elemental ratio. Furthermore, we observed a “table-like” magnetocaloric entropy change in GdFeCo thin film stacks with a high operational window (60 K) at a low applied field for an Ericsson magnetic regenerator around room temperature. 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Jagadish</creatorcontrib><creatorcontrib>Guo, Zengli</creatorcontrib><creatorcontrib>Gu, Lisha</creatorcontrib><creatorcontrib>Feng, Jinliang</creatorcontrib><creatorcontrib>Kamala Bharathi, K.</creatorcontrib><creatorcontrib>Wang, Ke</creatorcontrib><title>Broad table-like magnetocaloric effect in GdFeCo thin-films for room temperature Ericsson-cycle magnetic refrigeration</title><title>Journal of applied physics</title><description>We demonstrate magnetocaloric entropy change and compensation temperatures in ferrimagnetic Gdx(Fe10Co90)100−x amorphous thin films with transition metal-rich and rare earth-rich configurations. Thin films are sputtered with same Gd/FeCo elemental ratio at different thicknesses and of various Gd/FeCo ratios at a constant thickness to understand the effect of these two parameters on an antiferromagnetically coupled magnetic sub-lattice system. Temperature- and field-dependent magnetic measurements [M(H,T)] and magnetocaloric studies are performed over a broad range of temperature (70–600 K) by applying a magnetic field of ±15 kOe on sputter deposited 90 nm thin films of Gdx(Fe10Co90)1−x(x = 30,40,50,55,70). The compensation temperature is found to increase with increasing Gd concentration for thin films of the same thickness. A high magnetocaloric entropy change around 0.97 J/kg K (ΔH = ± 15 kOe) is observed for thin films having the same Gd/FeCo elemental ratio. Furthermore, we observed a “table-like” magnetocaloric entropy change in GdFeCo thin film stacks with a high operational window (60 K) at a low applied field for an Ericsson magnetic regenerator around room temperature. The studies will provide important insight into magnetocaloric studies for Ericsson-cycle refrigeration in thin films having antiferromagnetically coupled sublattices.</description><subject>Antiferromagnetism</subject><subject>Compensation</subject><subject>Entropy</subject><subject>Gadolinium</subject><subject>Magnetic measurement</subject><subject>Refrigeration</subject><subject>Regenerators</subject><subject>Room temperature</subject><subject>Temperature</subject><subject>Temperature dependence</subject><subject>Thickness</subject><subject>Thin films</subject><subject>Transition metals</subject><issn>0021-8979</issn><issn>1089-7550</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2024</creationdate><recordtype>article</recordtype><sourceid>AJDQP</sourceid><recordid>eNp9kM1KAzEUhYMoWKsL3yDgSiGaZCbNZKmlrULBja5DJj81dWZSk1To25vaunV14fLdc885AFwTfE_wpHpg95gIUgt-AkYENwJxxvApGGFMCWoEF-fgIqU1xoQ0lRiB76cYlIFZtZ1Fnf-0sFerweagVRei19A6Z3WGfoALM7fTAPOHH5DzXZ-gCxHGEHqYbb-xUeVttHBWrlIKA9I73f3JFaFoXfSrPeXDcAnOnOqSvTrOMXifz96mz2j5uniZPi6RrijPxTCpTUOMZZQLzjDmpFUtbZwxjCnd8hJWOc2oIXVVs9Y0DPNKiFYpJ_a7Mbg56G5i-NralOU6bONQXkoqeEVZPZnQQt0eKB1DSsWo3ETfq7iTBMt9rZLJY62FvTuwSfv8m-Uf-AdHBnhv</recordid><startdate>20240328</startdate><enddate>20240328</enddate><creator>Kumar, G. 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Temperature- and field-dependent magnetic measurements [M(H,T)] and magnetocaloric studies are performed over a broad range of temperature (70–600 K) by applying a magnetic field of ±15 kOe on sputter deposited 90 nm thin films of Gdx(Fe10Co90)1−x(x = 30,40,50,55,70). The compensation temperature is found to increase with increasing Gd concentration for thin films of the same thickness. A high magnetocaloric entropy change around 0.97 J/kg K (ΔH = ± 15 kOe) is observed for thin films having the same Gd/FeCo elemental ratio. Furthermore, we observed a “table-like” magnetocaloric entropy change in GdFeCo thin film stacks with a high operational window (60 K) at a low applied field for an Ericsson magnetic regenerator around room temperature. 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subjects | Antiferromagnetism Compensation Entropy Gadolinium Magnetic measurement Refrigeration Regenerators Room temperature Temperature Temperature dependence Thickness Thin films Transition metals |
title | Broad table-like magnetocaloric effect in GdFeCo thin-films for room temperature Ericsson-cycle magnetic refrigeration |
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