Skip to main navigation Skip to search Skip to main content

Quantum state and process tomography via adaptive measurements

  • Heng Yan Wang
  • , Wen Qiang Zheng
  • , Neng Kun Yu
  • , Ke Ren Li
  • , Da Wei Lu
  • , Tao Xin
  • , Carson Li
  • , Zheng Feng Ji
  • , David Kribs
  • , Bei Zeng
  • , Xin Hua Peng
  • , Jiang Feng Du
  • University of Science and Technology of China
  • Zhejiang University of Technology
  • University of Waterloo
  • Tsinghua University
  • University of Guelph
  • University of Technology Sydney
  • CAS - Institute of Software
  • Canadian Institute for Advanced Research

Research output: Contribution to journalArticlepeer-review

30 Scopus citations

Abstract

We investigate quantum state tomography (QST) for pure states and quantum process tomography (QPT) for unitary channels via adaptive measurements. For a quantum system with a d-dimensional Hilbert space, we first propose an adaptive protocol where only 2d − 1 measurement outcomes are used to accomplish the QST for all pure states. This idea is then extended to study QPT for unitary channels, where an adaptive unitary process tomography (AUPT) protocol of d2+d−1 measurement outcomes is constructed for any unitary channel. We experimentally implement the AUPT protocol in a 2-qubit nuclear magnetic resonance system. We examine the performance of the AUPT protocol when applied to Hadamard gate, T gate (π/8 phase gate), and controlled-NOT gate, respectively, as these gates form the universal gate set for quantum information processing purpose. As a comparison, standard QPT is also implemented for each gate. Our experimental results show that the AUPT protocol that reconstructing unitary channels via adaptive measurements significantly reduce the number of experiments required by standard QPT without considerable loss of fidelity.

Original languageEnglish
Article number100313
JournalScience China: Physics, Mechanics and Astronomy
Volume59
Issue number10
DOIs
StatePublished - Oct 1 2016

Keywords

  • nuclear magnetic resonance
  • quantum tomography
  • state reconstruction

Fingerprint

Dive into the research topics of 'Quantum state and process tomography via adaptive measurements'. Together they form a unique fingerprint.

Cite this