Dataset Open Access

Restoring the strange metal phase via suppression of charge density waves in an underdoped cuprate superconductor

Wahlberg, Eric; Arpaia, Riccardo; Seibold, Goetz; Rossi, Matteo; Fumagalli, Roberto; Trabaldo, Edoardo; Brookes, Nicholas; Braicovich, Lucio; Caprara, Sergio; Gran, Ulf; Ghiringhelli, Giacomo; Bauch, Thilo; Lombardi, Floriana


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    <subfield code="a">&lt;p&gt;[This repository contains the raw data for the manuscript &amp;quot;&lt;strong&gt;Restoring the strange metal phase via suppression of charge density waves in an underdoped cuprate superconductor&lt;/strong&gt;&amp;quot; (arXiv:2009.08398)]&lt;/p&gt;

&lt;p&gt;The normal state of cuprates is dominated by the &amp;ldquo;strange metal&amp;rdquo; phase that, near optimal doping, shows a linear temperature dependence of the resistivity persisting down to the lowest &lt;em&gt;T&lt;/em&gt;, when superconductivity is suppressed. For underdoped cuprates this behavior is lost below the pseudogap temperature &lt;em&gt;T&lt;/em&gt;*, where Charge Density Waves (CDW) together with other intertwined local orders characterize the ground state. Here we show that the &lt;em&gt;T&lt;/em&gt;-linear resistivity of highly strained, ultrathin and underdoped YBa&lt;sub&gt;2&lt;/sub&gt;Cu&lt;sub&gt;3&lt;/sub&gt;O&lt;sub&gt;7-&amp;delta;&lt;/sub&gt; films is restored when the CDW amplitude, detected by Resonant Inelastic X-ray scattering, is suppressed. This observation points towards an intimate connection between the onset of CDW and the departure from &lt;em&gt;T&lt;/em&gt;-linear resistivity in underdoped cuprates, a link that was missing until now.&amp;nbsp; It also illustrates the potentiality of strain control to manipulate the ground state of quantum materials.&lt;/p&gt;</subfield>
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    <subfield code="a">arXiv:2009.08398</subfield>
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    <subfield code="a">10.5281/zenodo.4724108</subfield>
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    <subfield code="a">10.5281/zenodo.4724109</subfield>
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