Surveying Structural Complexity in Quantum Many-Body Systems

Journal of Statistical Physics Springer Nature 187:1 (2022) 4

Authors:

Whei Yeap Suen, Thomas J Elliott, Jayne Thompson, Andrew JP Garner, John R Mahoney, Vlatko Vedral, Mile Gu

Efficient quantum imaginary time evolution by drifting real time evolution: an approach with low gate and measurement complexity

ArXiv 2203.11112 (2022)

Authors:

Yifei Huang, Yuguo Shao, Weiluo Ren, Jinzhao Sun, Dingshun Lv

Jordan in The Church of The Higher Hilbert Space: Entanglement and Thermal Fluctuations

Quanta 11:1 (2022) 1-4

Abstract:

Revisit Jordan’s derivation of Einstein’s formula for energy fluctuations in the black body in ther- mal equilibrium. This formula is usually taken to represent the unification of the wave and the particle aspects of the electromagnetic field since the fluctu- ations can be shown to be the sum of wave-like and particle-like contributions. However, in Jordan’s treat- ment there is no mention of the Planck distribution and all averages are performed with respect to pure number states of radiation (mixed states had not yet been discovered!). The chief reason why Jordan does reproduce Einstein’s result despite not using thermal states of radiation is that he focuses on fluctuations in a small (compared to the whole) volume of the black body. The state of radiation in a small volume is highly entangled to the rest of the black body which leads to the correct fluctuations even though the overall state might, in fact, be assumed to be pure (i.e. at zero temperature). I present a simple derivation of the fluc- tuations formula as an instance of mixed states being reductions of higher level pure states, a representation that is affectionately known as ªChurch of the Higher Hilbert Spaceº. According to this view of mixed states, temperature is nothing but the amount of entanglement between the system and its environment.

Classical Evolution Without Evolution

(2022)

A local-realistic theory for fermions

AVS Quantum Science 4:1 (2022)

Authors:

N Tibau Vidal, V Vedral, C Marletto

Abstract:

We propose a local model for general fermionic systems, which we express in the Heisenberg picture. To this end, we shall use a recently proposed formalism, the so-called "Raymond-Robichaud"construction, which allows one to construct an explicitly local model for any dynamical theory that satisfies no-signaling, in terms of equivalence classes of transformations that can be attached to each individual subsystem. By following the rigorous use of the parity superselection rule for fermions, we show how this construction removes the usual difficulties that fermionic systems display in regard to the definition of local states and local transformations.