7–11 Dec 2026
The University of Sydney
Australia/Sydney timezone
AIP Congress 2026

Two Dimensional Supersolidity in Dipolar Bose-Einstein condensates

Not scheduled
20m
Belinda Hutchinson Building (The University of Sydney )

Belinda Hutchinson Building

The University of Sydney

Abercrombie St & Codrington St NSW 2008
Contributed Oral ANZOS | Photonics and Optics (ANZCOP)

Description

What happens when a solid starts flowing like a superfluid, yet still creaks like a crystal? This is the remarkable behaviour of a supersolid — a phase of matter that combines crystalline order with frictionless flow. Once a long-standing theoretical curiosity, supersolidity has now been realised in an exceptionally clean and tunable platform: dilute dipolar Bose–Einstein condensates of highly magnetic atoms such as dysprosium and erbium. Recent experiments have used the competing effects of short-range contact and long-range dipolar interactions to self-organise these ultracold gases into periodic density modulations, while maintaining global phase coherence.

In this talk, I’ll introduce two-dimensional dipolar supersolids, examining the ground state phase diagram and excitations. Due to the broken gauge and translational symmetries, these supersolids exhibit three gapless excitations branches with associated speeds of sound. I will discuss the application of hydrodynamic theories to describe the supersolid properties, and relate the speeds of sound to its elastic parameters.

I am the presenting author Yes

Author

Blair Blakie (Department of Physics, University of Otago)

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