<?xml version="1.0" encoding="UTF-8"?>

<modsCollection xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.loc.gov/mods/v3" xsi:schemaLocation="http://www.loc.gov/mods/v3 http://www.loc.gov/standards/mods/v3/mods-3-3.xsd">
<mods version="3.3">

<genre>article</genre>

<titleInfo><title>End-to-end correlated subgap states in hybrid nanowires</title></titleInfo>


<note type="publicationStatus">published</note>


<note type="qualityControlled">yes</note>

<name type="personal">
  <namePart type="given">G. L. R.</namePart>
  <namePart type="family">Anselmetti</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">E. A.</namePart>
  <namePart type="family">Martinez</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">G. C.</namePart>
  <namePart type="family">Ménard</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">D.</namePart>
  <namePart type="family">Puglia</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">F. K.</namePart>
  <namePart type="family">Malinowski</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">J. S.</namePart>
  <namePart type="family">Lee</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">S.</namePart>
  <namePart type="family">Choi</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">M.</namePart>
  <namePart type="family">Pendharkar</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">C. J.</namePart>
  <namePart type="family">Palmstrøm</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">C. M.</namePart>
  <namePart type="family">Marcus</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">L.</namePart>
  <namePart type="family">Casparis</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">Andrew P</namePart>
  <namePart type="family">Higginbotham</namePart>
  <role><roleTerm type="text">author</roleTerm> </role><identifier type="local">4AD6785A-F248-11E8-B48F-1D18A9856A87</identifier><description xsi:type="identifierDefinition" type="orcid">0000-0003-2607-2363</description></name>







<name type="corporate">
  <namePart></namePart>
  <identifier type="local">AnHi</identifier>
  <role>
    <roleTerm type="text">department</roleTerm>
  </role>
</name>








<abstract lang="eng">End-to-end correlated bound states are investigated in superconductor-semiconductor hybrid nanowires at zero magnetic field. Peaks in subgap conductance are independently identified from each wire end, and a cross-correlation function is computed that counts end-to-end coincidences, averaging over thousands of subgap features. Strong correlations in a short, 300-nm device are reduced by a factor of 4 in a long, 900-nm device. In addition, subgap conductance distributions are investigated, and correlations between the left and right distributions are identified based on their mutual information.</abstract>

<originInfo><publisher>American Physical Society</publisher><dateIssued encoding="w3cdtf">2019</dateIssued>
</originInfo>
<language><languageTerm authority="iso639-2b" type="code">eng</languageTerm>
</language>



<relatedItem type="host"><titleInfo><title>Physical Review B</title></titleInfo>
  <identifier type="issn">2469-9950</identifier>
  <identifier type="eIssn">2469-9969</identifier>
  <identifier type="arXiv">1908.05549</identifier>
  <identifier type="ISI">000495967500006</identifier><identifier type="doi">10.1103/physrevb.100.205412</identifier>
<part><detail type="volume"><number>100</number></detail><detail type="issue"><number>20</number></detail>
</part>
</relatedItem>


<extension>
<bibliographicCitation>
<short>G.L.R. Anselmetti, E.A. Martinez, G.C. Ménard, D. Puglia, F.K. Malinowski, J.S. Lee, S. Choi, M. Pendharkar, C.J. Palmstrøm, C.M. Marcus, L. Casparis, A.P. Higginbotham, Physical Review B 100 (2019).</short>
<mla>Anselmetti, G. L. R., et al. “End-to-End Correlated Subgap States in Hybrid Nanowires.” &lt;i&gt;Physical Review B&lt;/i&gt;, vol. 100, no. 20, 205412, American Physical Society, 2019, doi:&lt;a href=&quot;https://doi.org/10.1103/physrevb.100.205412&quot;&gt;10.1103/physrevb.100.205412&lt;/a&gt;.</mla>
<ieee>G. L. R. Anselmetti &lt;i&gt;et al.&lt;/i&gt;, “End-to-end correlated subgap states in hybrid nanowires,” &lt;i&gt;Physical Review B&lt;/i&gt;, vol. 100, no. 20. American Physical Society, 2019.</ieee>
<ama>Anselmetti GLR, Martinez EA, Ménard GC, et al. End-to-end correlated subgap states in hybrid nanowires. &lt;i&gt;Physical Review B&lt;/i&gt;. 2019;100(20). doi:&lt;a href=&quot;https://doi.org/10.1103/physrevb.100.205412&quot;&gt;10.1103/physrevb.100.205412&lt;/a&gt;</ama>
<ista>Anselmetti GLR, Martinez EA, Ménard GC, Puglia D, Malinowski FK, Lee JS, Choi S, Pendharkar M, Palmstrøm CJ, Marcus CM, Casparis L, Higginbotham AP. 2019. End-to-end correlated subgap states in hybrid nanowires. Physical Review B. 100(20), 205412.</ista>
<chicago>Anselmetti, G. L. R., E. A. Martinez, G. C. Ménard, D. Puglia, F. K. Malinowski, J. S. Lee, S. Choi, et al. “End-to-End Correlated Subgap States in Hybrid Nanowires.” &lt;i&gt;Physical Review B&lt;/i&gt;. American Physical Society, 2019. &lt;a href=&quot;https://doi.org/10.1103/physrevb.100.205412&quot;&gt;https://doi.org/10.1103/physrevb.100.205412&lt;/a&gt;.</chicago>
<apa>Anselmetti, G. L. R., Martinez, E. A., Ménard, G. C., Puglia, D., Malinowski, F. K., Lee, J. S., … Higginbotham, A. P. (2019). End-to-end correlated subgap states in hybrid nanowires. &lt;i&gt;Physical Review B&lt;/i&gt;. American Physical Society. &lt;a href=&quot;https://doi.org/10.1103/physrevb.100.205412&quot;&gt;https://doi.org/10.1103/physrevb.100.205412&lt;/a&gt;</apa>
</bibliographicCitation>
</extension>
<recordInfo><recordIdentifier>7145</recordIdentifier><recordCreationDate encoding="w3cdtf">2019-12-04T16:02:25Z</recordCreationDate><recordChangeDate encoding="w3cdtf">2024-02-28T13:13:51Z</recordChangeDate>
</recordInfo>
</mods>
</modsCollection>
