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	<title>magnetic memory &#8211; BIOENGINEER.ORG</title>
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		<title>Hidden Atomic Spiral in Uranium Crystal Reveals Rare Dual Magnetism</title>
		<link>https://bioengineer.org/hidden-atomic-spiral-in-uranium-crystal-reveals-rare-dual-magnetism/</link>
		
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		<pubDate>Thu, 08 Oct 2026 22:04:55 +0000</pubDate>
				<category><![CDATA[Chemistry]]></category>
		<category><![CDATA[antiferromagnetism]]></category>
		<category><![CDATA[chiral superlattice]]></category>
		<category><![CDATA[condensed matter physics]]></category>
		<category><![CDATA[ferromagnetism]]></category>
		<category><![CDATA[magnetic memory]]></category>
		<category><![CDATA[Nature journal]]></category>
		<category><![CDATA[Quantum materials]]></category>
		<category><![CDATA[Scanning Tunneling Microscopy]]></category>
		<category><![CDATA[spintronics]]></category>
		<category><![CDATA[topological materials]]></category>
		<category><![CDATA[transmission electron microscopy]]></category>
		<category><![CDATA[uranium oxytelluride]]></category>
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					<description><![CDATA[Researchers at The University of Texas at Dallas and Harvard discovered a hidden chiral superlattice in uranium oxytelluride that combines ferromagnetic and antiferromagnetic behavior, pointing to faster and more robust computer memory.]]></description>
		
		
		
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