Skip to main content
UCL Logo Navigate back to homepage

Main navigation

  • Home
  • Study

    Study

    • Study at UCL
    • Prospective students
    • Current students
    • Languages and international education
    • Accommodation
    • Careers
    • Doctoral School
    • Immigration and visas
    • Student finances
    • Support and wellbeing
  • Research

    Research

    • Research at UCL
    • Engage with us
    • Explore our Research
    • Initiatives and networks
    • Research news
  • Engage

    Engage

    • Engage with UCL
    • Alumni
    • Business partnerships and collaboration
    • Global engagement
    • News and Media relations
    • Policy and political engagement
    • Schools and priority groups
    • Give to UCL
  • About

    About

    • About UCL
    • Who we are
    • Faculties
    • Governance
    • President and Provost
    • Strategy
    • UCL's Bicentenary
  • UCL Logo Active parent page: Mathematical & Physical Sciences
    • Study
    • UCL200
    • Research
    • Departments
    • Active parent page: News and events
    • Innovation & Enterprise
    • About
    • Contacts

Seminar: Towards a large-scale quantum computer

Dr James Clarke, from Intel, speaks about advances in silicon spin qubit technology.

12 January 2020

Photo of Jim Clarke

Breadcrumb trail

  • Faculty of Mathematical & Physical Sciences

Faculty menu

  • Current page: News
  • Events

Breadcrumb trail

  • Faculty of Mathematical & Physical Sciences
  • News and events
  • Seminar: Towards a large-scale quantum computer

HOST: Prof. John Morton

SPEAKER: Dr James Clarke | Director of Quantum Hardware | Intel Corporation

TIME & VENUE: Monday | 20th January, 2020 | 12:00 AM | G01 Lankester LT | Medawar Building, UCL

TITLE: Towards a large scale quantum computer using advanced fabrication technologies

ABSTRACT: Realising quantum computing’s promise will require tens of thousands of qubits that can communicate with each other. Today’s prototype quantum computers contain tens of qubits made from a technology involving superconducting circuits, but many view silicon-based qubits as more promising in the long run.

At Intel, we are focused on developing silicon spin qubit technology that leverages existing CMOS manufacturing techniques. In December, Intel introduced the ‘first-of-its-kind’ cryo-controller chip for quantum computing and previewed a cryo-prober tool for characterizing quantum processor chips. The new controller is a mixed-signal SoC named‘Horse Ridge’ after one of the coldest regions in Oregon and is designed to operate at approximately 4 Kelvin. Both devices attack key challenges in quantum computing – the ability to scale up the number of qubits in a processor and the ability to quickly characterize them.

Jim Clarke is the director of the Quantum Hardware research group within Intel’s Components Research Organization. He launched Intel’s Quantum Computing effort in 2015, as well as a research partnership with QuTech (TU Delft and TNO). His group’s primary focus is to use Intel’s process expertise to develop scalable qubit arrays. Prior to joining Intel in 2001, Jim completed a B.S. in chemistry at Indiana University, a Ph.D. in physical chemistry at Harvard University and a post-doctoral fellowship in physical organic chemistry at ETH, Zürich.

UCL footer

Visit

  • Bloomsbury Theatre and Studio
  • Library, Museums and Collections
  • UCL Maps
  • UCL Shop
  • Contact UCL

Students

  • Accommodation
  • Current Students
  • Moodle
  • Students' Union

Staff

  • Inside UCL
  • Staff Intranet
  • Work at UCL
  • Human Resources
UCL Logo

University College London

Gower Street, London, WC1E 6BT

Telephone: +44 (0) 20 7679 2000

UCL social media menu

  • Link to Instagram
  • Link to Youtube
  • Link to TikTok
  • Link to Facebook
  • Link to Soundcloud
Here, it can happen.
Back to top

Essential

  • Disclaimer
  • Freedom of Information
  • Accessibility
  • Cookies
  • Privacy
  • Slavery statement
  • Log in

© 2026 UCL