Episode

Can Great Sky’s Light-Connected AI Enable Bigger Brains?

Podcast
EE Times Current
Published
Jul 22, 2026
Duration seconds
3497
Processing state
not_requested
Canonical source
https://podcast.show/aspencore/episode/154446020/
Audio
https://media.blubrry.com/aspencore/content.blubrry.com/aspencore/AspenCore_EETC_B_M_EP40_JeffShainline_072026.mp3
JSON
/v1/public/podcasts/ee-times-current-709434/episodes/can-great-sky-s-light-connected-ai-enable-bigger-brains
Markdown
/podcast/ee-times-current-709434/can-great-sky-s-light-connected-ai-enable-bigger-brains.md

Actions

  • POST https://stenobird.com/v1/public/podcasts/ee-times-current-709434/episodes/can-great-sky-s-light-connected-ai-enable-bigger-brains/transcription-requests
    Idempotently request low-priority transcript generation for this episode.
  • GET https://stenobird.com/podcast/ee-times-current-709434/can-great-sky-s-light-connected-ai-enable-bigger-brains.md
    Read the agent-friendly Markdown representation of this episode resource.

Summary

In this month’s Brains and Machines podcast, Dr. Jeff Shainline talks about superconducting neural hardware with Dr. Sunny Bains of University College London. Currently in development at Great Sky in Boulder, Colorado, the new systems will incorporate photonic interconnects and a neuromorphic approach to intelligence. Discussion follows with Dr. Giulia D’Angelo from the Czech Technical University in Prague and Professor Ralph Etienne-Cummings of Johns Hopkins University.