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IBM Research - Thomas J. Watson Research Center

United States

23 papers here2.1k citations across 23
fields
  • quant-ph14
  • cond-mat.mtrl-sci2
  • cs.IT2
  • astro-ph.CO1
  • cond-mat.mes-hall1
  • cs.CL1
  • math.DS1
  • nlin.CD1
ROR 0265w5591OpenAlex

affiliations via OpenAlex

output
20022009
most citedStrong Suppression of Electrical Noise in Bilayer Graphene Nano Devices

398 citations

researchers with a paper here
  • Graeme Smith6
  • John A. Smolin6
  • Bei Zeng3
  • Andrew W. Cross2
  • B. Terhal2 · h 57
  • Charles H. Bennett2 profiles2 · h 50
  • C. Wu2 · h 45
  • D. DiVincenzo2 · h 70
  • Peter W. Shor2
  • Phaedon Avouris2
  • P. Hayden2 · h 48
  • Vasili Perebeinos2
collaborating institutions
  • IBM (United States)US7 papers
  • Massachusetts Institute of TechnologyUS5 papers
  • California Institute of TechnologyUS3 papers
  • Cornell UniversityUS2 papers
  • AT&T (United States)US1 paper
  • Austrian Academy of SciencesAT1 paper
  • Cancer Research UKGB1 paper
  • Cancer Research UK Cambridge CenterGB1 paper
  • Centre de Mathématiques Appliquées de l'École polytechniqueFR1 paper
  • Colgate UniversityUS1 paper
  • École PolytechniqueFR1 paper
  • Institute of Cancer ResearchGB1 paper
Showing cond-mat.mtrl-sciShow all

1 paper · 1 filter

cond-mat.mtrl-sci2008★ 398 cited

Strong Suppression of Electrical Noise in Bilayer Graphene Nano Devices

Yu-Ming Lin, Phaedon Avouris

Low-frequency 1/f noise is ubiquitous, and dominates the signal-to-noise performance in nanodevices. Here we investigate the noise characteristics of single-layer and bilayer graph…

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