DCMPMS Seminars

Measuring Entanglement Entropy

by Dr. Kazi Rajibul Islam (MIT-Harvard Center for Ultracold Atoms, Massachusetts Institute of Technology, Cambridge, USA)

Thursday, January 7, 2016 from to (Asia/Kolkata)
at AG80
Description
Entanglement, perhaps the most counter-intuitive feature of quantum mechanics, describes non-local correlations between quantum objects. In recent years, entanglement has emerged as a central concept in our understanding of quantum many-body physics. It allows us to characterize phases of quantum matter that cannot be distinguished by broken symmetries, such as topological states. Measuring entanglement, however, remains challenging. In the context of quantum many-body systems, entanglement is most often quantified by entanglement entropy. In this talk, I will present the first measurements of entanglement entropy [1].  This has been made possible by the single-site resolved control and detection of ultracold bosonic atoms in an optical lattice. We directly measure (the second order Renyi) entanglement entropy by creating and interfering two identical copies of a quantum many-body state.

[1] Rajibul Islam et al, Nature 528, 77 (2015)