Skip to main navigation Skip to search Skip to main content

Different instances of time as different quantum modes: Quantum states across space-time for continuous variables

  • Tian Zhang*
  • , Oscar Dahlsten
  • , Vlatko Vedral
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Space-time is one of the most essential, yet most mysterious concepts in physics. In quantum mechanics it is common to understand time as a marker of instances of evolution and define states around all the space but at one time; while in general relativity space-time is taken as a combinator, curved around mass. Here we present a unified approach on both space and time in quantum theory, and build quantum states across spacetime instead of only on spatial slices. We no longer distinguish measurements on the same system at different times with measurements on different systems at one time and construct spacetime states upon these measurement statistics. As a first step towards non-relativistic quantum field theory, we consider how to approach this in the continuous-variable multi-mode regime. We propose six possible definitions for spacetime states in continuous variables, based on four different measurement processes: quadratures, displaced parity operators, position measurements and weak measurements. The basic idea is to treat different instances of time as different quantum modes. They are motivated by the pseudo-density matrix formulation among indefinite causal structures and the path integral formalism. We show that these definitions lead to desirable properties, and raise the differences and similarities between spatial and temporal correlations. An experimental proposal for tomography is presented, construing the operational meaning of the spacetime states.
Original languageEnglish
Article number023029
JournalNew Journal of Physics
Volume22
Issue number2
Online published14 Feb 2020
DOIs
Publication statusPublished - Feb 2020
Externally publishedYes

Funding

The authors thank Lucien Hardy, Robert W Spekkens, Rafael D Sorkin, Seth Lloyd, Mile Gu, Daniel Ebler, David Schmid, Hilary Carteret, Ali Akil, Su-Yong Lee for helpful discussion. A special thanks to Jonathan Barrett for mentioning weak measurements to us. TZ is grateful to Heng Shen for his help on designing the experimental proposal. TZ thanks Felix Leditzky, Graeme Smith, Mark M Wilde for the opportunity to present part of this work at Rocky Mountain Summit on Quantum Information as well as Hilary Carteret and John Donohue for inviting her to present part of this work at Institute of Quantum Computing, University of Waterloo. VV thanks the John Templeton Foundation and the National Research Foundation, Prime Minister’s Office, Singapore, under its Competitive Research Programme (CRP Award No. NRF- CRP14-2014-02) and administered by Centre for Quantum Technologies, National University of Singapore. This research is also supported by the National Research Foundation, Prime Minister’s Office, Singapore and the Ministry of Education, Singapore under the Research Centres of Excellence programme.

Research Keywords

  • continuous variables
  • quantum correlations
  • quantum states across spacetime
  • temporal modes

Fingerprint

Dive into the research topics of 'Different instances of time as different quantum modes: Quantum states across space-time for continuous variables'. Together they form a unique fingerprint.

Cite this