How can I perform partial trace for a pure state with four subsystems?
10 Ansichten (letzte 30 Tage)
Ältere Kommentare anzeigen
Hello everyone,
I am working a quantum system of Hilbert space 2X2XNXN and investigating the dynamical evolution of the entanglement between subsystems (1,3) and (2,4). At every time step, I have a pure state \ket{psi} of dimension 2X2XNXN, and I want to find a reduced density matrix after tracing out subsystems 2nd and 4th, i.e., the reduced density matrix should be 2NX2N dimensional.
I looked at some functions which are available online for doing these (one of the very famous one is from QETLAB) but they are very slow and I need to call them after each time step.
Given that I have pure state at all time steps, is there an efficient way to do this partial trace without using those complicated functions?
0 Kommentare
Antworten (1)
Matt J
am 18 Aug. 2025
Does this do what you want?
% reshape |psi> into tensor (s1,s2,s3,s4)
psi_tensor = reshape(psi,[2,2,N,N]);
% reorder to group (s1,s3) vs (s2,s4), then flatten
psi_mat = reshape(permute(psi_tensor,[1,3,2,4]), [2*N, 2*N]);
% reduced density matrix rho_13 = psi_mat * psi_mat'
rho_13 = psi_mat * psi_mat';
Siehe auch
Kategorien
Mehr zu Operating on Diagonal Matrices finden Sie in Help Center und File Exchange
Community Treasure Hunt
Find the treasures in MATLAB Central and discover how the community can help you!
Start Hunting!