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DTSTART:20230312T070000
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DTSTART:20221106T060000
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DTSTART;TZID=America/Toronto:20230425T120000
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URL:https://uwaterloo.ca/institute-for-quantum-computing/events/iqc-student
 -seminar-featuring-emma-bergeron
LOCATION:QNC - Quantum Nano Centre 200 University Avenue West QNC 1201 Wate
 rloo ON N2L 3G1 Canada
SUMMARY:IQC Student Seminar featuring Emma Bergeron
CLASS:PUBLIC
DESCRIPTION:DEVELOPMENT OF INSB SURFACE QUANTUM WELLS FOR HYBRID SUPERCONDU
 CTING\nDEVICE APPLICATIONS. \n\nAbstract: Surface quantum well (QW) heter
 ostructures in III-V\nsemiconductors are compatible with proximitized supe
 rconductivity and\noffer a scalable planar platform for superconductor-sem
 iconductor\nsystems\, such as those suggested for topological quantum comp
 utation\nand those suitable for topological phase transitions involving\nM
 ajorana zero modes. Amongst III-V binary semiconductors\, Indium\nAntimoni
 de (InSb) has the smallest electron effective mass\, highest\nspin orbit c
 oupling and largest Land´e g-factor. Such material\nproperties makes the 
 pursuit of InSb QWs desirable for a number of\nquantum device applications
 \, including quantum sensing\, quantum\nmetrology\, and quantum computing.
  \n\nUnfortunately\, high quality two-dimensional electron gases (2DEGs) i
 n\nInSb QWs have so far been difficult to realize. InSb QWs have\ngenerall
 y relied on the use of modulation doping for 2DEG formation\,\nbut these s
 tructures have frequently reported issues with parasitic\nparallel conduct
 ion and unstable carrier densities. We report on the\ntransport characteri
 stics of field effect 2DEGs in surface InSb\nquantum wells which overcome 
 these challenges and are suitable for\nfuture hybrid superconducting devic
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DTSTAMP:20260406T222602Z
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