HQI Open House

HQI Open House Event Schedule

TIME

EVENT

LOCATION
11:30 AM-12:00 PM
Arrive, pick up boxed lunch
Jefferson 250
12:00 PM-1:30 PM

Panel: Realizing Impact Through Translation and Startup Formation, co-hosted by Harvard's Office of Technology Development and HQI

Jefferson 250
 

Opening Remarks: David E. Goel, Managing General Partner, Matrix Capital Management Company, LP

Pathways to Translate Quantum Research

  • Moderator: Andy Ory, Entrepreneur and Founder, 128 Technologies
  • Company Perspective: Mihir Bhaskar, Research Lead, AWS Center for Quantum Networking
  • Startup Co-Founder Perspective: Alex Keesling, CEO, QuEra
  • Faculty Perspective: Marko Loncar, Tiantsai Lin Professor of Electrical Engineering

Fireside Chat - Launching a Tough Tech Startup

  • Moderator: Sam Liss, Executive Director, Strategic Partnerships, OTD
  • Milo Werner, General Partner, The Engine
  • Josh Krieger, Associate Professor, Harvard Business School

Closing Remarks: Evelyn Hu, Tarr-Coyne Professor of Applied Physics and Electrical Engineering, SEAS

 
1:30 - 1:45 PM
Break
 
1:45 - 3:45 PM

HQI Postdoctoral Fellow Talks

  • 2:00 PM Dr. Shaowen Chen
  • 2:30 PM Dr. Aziza Suleymanzade
  • 3:00 PM Dr. Jue Wang
    • "Quantum Melting Phase Diagram of a Two-Dimensional Electron Wigner Crystal"
      Strongly interacting electrons can form novel quantum states of matter, exhibiting rich phase diagrams and exotic physical phenomena. The two-dimensional (2D) electron gas provides a paradigmatic example, where competition between Coulomb repulsion and kinetic energy leads to quantum melting of an electron Wigner crystal on increasing electron density. Despite nearly a century of intensive research, however, the detailed nature of this transition is not fully understood. Here, using cryogenic reflectance and magneto-optic spectroscopy, we provide clear experimental evidence for long-standing theoretical predictions that the density-driven quantum melting of a Wigner crystal proceeds through intermediate phase(s) characterized by a microscopic coexistence of crystal and liquid states. At densities below ~3×10^11 cm−2, electrons in a MoSe2 monolayer form a two-dimensional Wigner crystal. As the electron density increases, we observe abrupt changes in the spin susceptibility, excitonic reflection spectrum, and charge-order-induced umklapp scattering. These anomalies mark clear phase boundaries separating a Wigner crystal, intermediate quantum melting phase(s), and a Fermi liquid state. The experimentally determined phase diagram reveals the prominent Pomeranchuk effect arising from the enhanced stability of the crystalline phase upon heating due to its large spin entropy. Our study reveals the interplay between distinct electronic states and establishes the multi-staged nature of the quantum melting in a 2D correlated electron system. Atomically thin semiconductors thus provide a unique experimental platform to study the universal properties of quantum phase transitions in correlated electron systems in two dimensions.
  • 3:30 PM Dr. Loïc Anderegg
Jefferson 250
3:55-4pm
Break
 
4:00 - 4:45 PM

Undergraduate and Post-Baccalaureate Researchers Talks

  • Mincheol Park
  • Tasuku Ono
  • Bradley Baltz
Jefferson 250
5:00 - 7:00 PM
Poster Session
Jefferson 450 (Physics Library)