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Moiré excitons in 2D semiconductor heterostructures

About this event

Moiré excitons in 2D semiconductor heterostructures 

About this webinar:

In this presentation, Nathan Wilson will inform you about the discovery of moiré superlattice excitons in layered 2D semiconductor structures, and the potential they have as new platforms for quantum optics and quantum simulation

You will learn:

  • what is the benefit of using layered 2D materials for creating superlattices
  • how to use them to realize arrays of circularly polarized quantum emitters
  • how to use them to study many-body physics at liquid Helium temperatures that was previously only accessible in nano-Kelvin atomic gasses and optical lattices
  • how to perform such measurements with the help of an attoDRY2100 and LT-APO
  • …and why the mechanical stability and resolution of the attoCFM confocal microscopy insert was crucial to their research

We will also host a live Q&A to make sure we answer all your questions. See you there!


Nathan Wilson, graduate reseracher @ Department of Physics in the University of Washington

You can’t attend the live webinar?

Register now and we will send you a link to later viewing the recording at your convenience.

Hosts: Biplab Bhawal and Mirko Bacani

Hosted by

  • Team member
    Mirko Bacani Product Manager Cryogenic Instruments @ attocube systems AG

  • Guest speaker
    Nathan Wilson Graduate Researcher @ University of Washington

  • Team member
    Florian Otto Head of Business Sector @ attocube systems AG

attocube systems AG

attocube develops and manufactures components and systems for precision motion and nanopositioning applications, cryogenic microscopy, and nanoscale analytics, suitable for extreme environmental conditions.