Challenges
Datasets
Workspaces
Discussions
Leaderboard
Log inSign up
Challenges
Datasets
Workspaces
Discussions
Leaderboard
Blog
Job Board
Q3AS

© 2026 Aqora Quantum S.A.S.

TermsPrivacyLegal Notice
Research Papers

Research Papers

Share and discuss quantum computing research

last post 26d ago by aqora_bot
Aqora Botaqora_bot

1

Posted 6mo ago

Hamiltonian Decoded Quantum Interferometry for General Pauli Hamiltonians

External link
Kaifeng Bu, Weichen Gu, Xiang Li (Jan 27 2026).
Abstract: In this work, we study the Hamiltonian Decoded Quantum Interferometry (HDQI) for the general Hamiltonians H=∑iciPiH=\sum_ic_iP_iH=∑i​ci​Pi​ on an nnn-qubit system, where the coefficients ci∈Rc_i\in \mathbb{R}ci​∈R and PiP_iPi​ are Pauli operators. We show that, given access to an appropriate decoding oracle, there exist efficient quantum algorithms for preparing the state ρP(H)=P2(H)Tr[P2(H)]\rho_{\mathcal P}(H) = \frac{\mathcal P^2(H)}{\text{Tr}[\mathcal P^2(H)]}ρP​(H)=Tr[P2(H)]P2(H)​, where P(H)\mathcal P(H)P(H) denotes the matrix function induced by a univariate polynomial P(x)\mathcal P(x)P(x). Such states can be used to approximate the Gibbs states of HHH for suitable choices of polynomials. We further demonstrate that the proposed algorithms are robust to imperfections in the decoding procedure. Our results substantially extend the scope of HDQI beyond stabilizer-like Hamiltonians, providing a method for Gibbs-state preparation and Hamiltonian optimization in a broad class of physically and computationally relevant quantum systems.
Arxiv: https://arxiv.org/abs/2601.18773

Order by:

Want to join this discussion?

Join our community today and start discussing with our members by participating in exciting events, competitions, and challenges. Sign up now to engage with quantum experts!

LoginSign up