Papers › Quantum State Tomography with Conditional Generative Adversarial Networks

Quantum State Tomography with Conditional Generative Adversarial Networks

7 Aug 2020arXiv:2008.03240archive 2025-07-28

Shahnawaz Ahmed, Carlos Sánchez Muñoz, Franco Nori, Anton Frisk Kockum

Quantum state tomography (QST) is a challenging task in intermediate-scale quantum devices. Here, we apply conditional generative adversarial networks (CGANs) to QST. In the CGAN framework, two duelling neural networks, a generator and a discriminator, learn multi-modal models from data. We augment a CGAN with custom neural-network layers that enable conversion of output from any standard neural network into a physical density matrix. To reconstruct the density matrix, the generator and discriminator networks train each other on data using standard gradient-based methods. We demonstrate that our QST-CGAN reconstructs optical quantum states with high fidelity orders of magnitude faster, and from less data, than a standard maximum-likelihood method. We also show that the QST-CGAN can reconstruct a quantum state in a single evaluation of the generator network if it has been pre-trained on similar quantum states.

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Discriminator quantshah/qst-cgan/qst_cgan/gan.py official repository unverified MIT (permissive) · 67e33dc775e7dc48 · report
batched_expect quantshah/qst-cgan/qst_cgan/ops.py official repository unverified MIT (permissive) · e8ff90c54135ae9c · report
discriminator_loss quantshah/qst-cgan/qst_cgan/gan.py official repository unverified MIT (permissive) · 1d5b2bf29452bf8f · report
dm_to_tf quantshah/qst-cgan/qst_cgan/ops.py official repository unverified MIT (permissive) · 10db4ead839d8a50 · report
random_alpha quantshah/qst-cgan/qst_cgan/ops.py official repository unverified MIT (permissive) · fb6d7e9fffc0f957 · report

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Quantum State Tomography

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