Alert button
Picture for Shouvanik Chakrabarti

Shouvanik Chakrabarti

Alert button

Privacy-preserving quantum federated learning via gradient hiding

Add code
Bookmark button
Alert button
Dec 07, 2023
Changhao Li, Niraj Kumar, Zhixin Song, Shouvanik Chakrabarti, Marco Pistoia

Viaarxiv icon

Blind quantum machine learning with quantum bipartite correlator

Add code
Bookmark button
Alert button
Oct 19, 2023
Changhao Li, Boning Li, Omar Amer, Ruslan Shaydulin, Shouvanik Chakrabarti, Guoqing Wang, Haowei Xu, Hao Tang, Isidor Schoch, Niraj Kumar, Charles Lim, Ju Li, Paola Cappellaro, Marco Pistoia

Figure 1 for Blind quantum machine learning with quantum bipartite correlator
Figure 2 for Blind quantum machine learning with quantum bipartite correlator
Figure 3 for Blind quantum machine learning with quantum bipartite correlator
Figure 4 for Blind quantum machine learning with quantum bipartite correlator
Viaarxiv icon

Quantum Deep Hedging

Add code
Bookmark button
Alert button
Mar 29, 2023
El Amine Cherrat, Snehal Raj, Iordanis Kerenidis, Abhishek Shekhar, Ben Wood, Jon Dee, Shouvanik Chakrabarti, Richard Chen, Dylan Herman, Shaohan Hu, Pierre Minssen, Ruslan Shaydulin, Yue Sun, Romina Yalovetzky, Marco Pistoia

Figure 1 for Quantum Deep Hedging
Figure 2 for Quantum Deep Hedging
Figure 3 for Quantum Deep Hedging
Figure 4 for Quantum Deep Hedging
Viaarxiv icon

Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels

Add code
Bookmark button
Alert button
Mar 26, 2023
Xuchen You, Shouvanik Chakrabarti, Boyang Chen, Xiaodi Wu

Figure 1 for Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels
Figure 2 for Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels
Figure 3 for Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels
Figure 4 for Analyzing Convergence in Quantum Neural Networks: Deviations from Neural Tangent Kernels
Viaarxiv icon

Numerical evidence against advantage with quantum fidelity kernels on classical data

Add code
Bookmark button
Alert button
Nov 29, 2022
Lucas Slattery, Ruslan Shaydulin, Shouvanik Chakrabarti, Marco Pistoia, Sami Khairy, Stefan M. Wild

Figure 1 for Numerical evidence against advantage with quantum fidelity kernels on classical data
Figure 2 for Numerical evidence against advantage with quantum fidelity kernels on classical data
Figure 3 for Numerical evidence against advantage with quantum fidelity kernels on classical data
Figure 4 for Numerical evidence against advantage with quantum fidelity kernels on classical data
Viaarxiv icon

A Convergence Theory for Over-parameterized Variational Quantum Eigensolvers

Add code
Bookmark button
Alert button
May 25, 2022
Xuchen You, Shouvanik Chakrabarti, Xiaodi Wu

Figure 1 for A Convergence Theory for Over-parameterized Variational Quantum Eigensolvers
Figure 2 for A Convergence Theory for Over-parameterized Variational Quantum Eigensolvers
Figure 3 for A Convergence Theory for Over-parameterized Variational Quantum Eigensolvers
Figure 4 for A Convergence Theory for Over-parameterized Variational Quantum Eigensolvers
Viaarxiv icon

Quantum Machine Learning for Finance

Add code
Bookmark button
Alert button
Sep 09, 2021
Marco Pistoia, Syed Farhan Ahmad, Akshay Ajagekar, Alexander Buts, Shouvanik Chakrabarti, Dylan Herman, Shaohan Hu, Andrew Jena, Pierre Minssen, Pradeep Niroula, Arthur Rattew, Yue Sun, Romina Yalovetzky

Viaarxiv icon

Sublinear classical and quantum algorithms for general matrix games

Add code
Bookmark button
Alert button
Dec 11, 2020
Tongyang Li, Chunhao Wang, Shouvanik Chakrabarti, Xiaodi Wu

Figure 1 for Sublinear classical and quantum algorithms for general matrix games
Figure 2 for Sublinear classical and quantum algorithms for general matrix games
Viaarxiv icon

On the Principles of Differentiable Quantum Programming Languages

Add code
Bookmark button
Alert button
Apr 02, 2020
Shaopeng Zhu, Shih-Han Hung, Shouvanik Chakrabarti, Xiaodi Wu

Figure 1 for On the Principles of Differentiable Quantum Programming Languages
Figure 2 for On the Principles of Differentiable Quantum Programming Languages
Figure 3 for On the Principles of Differentiable Quantum Programming Languages
Figure 4 for On the Principles of Differentiable Quantum Programming Languages
Viaarxiv icon

Quantum Wasserstein Generative Adversarial Networks

Add code
Bookmark button
Alert button
Oct 31, 2019
Shouvanik Chakrabarti, Yiming Huang, Tongyang Li, Soheil Feizi, Xiaodi Wu

Figure 1 for Quantum Wasserstein Generative Adversarial Networks
Figure 2 for Quantum Wasserstein Generative Adversarial Networks
Figure 3 for Quantum Wasserstein Generative Adversarial Networks
Figure 4 for Quantum Wasserstein Generative Adversarial Networks
Viaarxiv icon