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Juan Felipe Huan Lew Yee

@felipelewyee.bsky.social
29 followers 23 following 7 posts

Quantum Chemist. Associate Professor at the Chemistry Faculty, Universidad Nacional Autónoma de México (UNAM).

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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 29/07/2026
My 1st PECI research stay group at FQ_UNAM wrapped up 4 weeks of quantum chemistry & ML! 🧪💻They built a PC & used Python, Julia, Psi4 & TensorFlow to model pKa, quantum chemistry, surfactants, & PES. Poster photos soon! 📸 #QuantumChemistry #MachineLearning #UNAM #JuliaLang
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 07/03/2026
I'm happy to share my new article in collaboration with Prof. Mario Piris and @imitxelena003.bsky.social, from @theochemehu.bsky.social Here, we show that GNOF/GNOFm can reproduce CCSD(T) trends, capturing correlation and dipole moments. 📊 #QuantumChemistry #NOF #JCTC pubs.acs.org/doi/10.1021/...
pubs.acs.org
5- and 6-Membered Rings: A Natural Orbital Functional Study
The Global Natural Orbital Functional (GNOF) provides a straightforward approach to capture most electron correlation effects without needing perturbative corrections or limited active spaces selectio...
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Reposted by Juan Felipe Huan Lew Yee
imitxelena003 @imitxelena003.bsky.social · 18/02/2026
DoNOF 2.0 is out! Drastically more efficient than DoNOF1.0 !!! Open-source, NOFT calculations on molecules (energy, geom-opt ...); strong-correlation friendly! paper: doi.org/10.1063/5.03... code: github.com/DoNOF/DoNOFsw documentation: donof-documentation.readthedocs.io/en/latest/in... #compchem
github.com
GitHub - DoNOF/DoNOFsw: Donostia Natural Orbital Functional Software
Donostia Natural Orbital Functional Software. Contribute to DoNOF/DoNOFsw development by creating an account on GitHub.
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 26/11/2025
Muy feliz de ver esto
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 20/11/2025
Muy feliz de escuchar esto "Se construirá una Supercomputadora 100 por ciento mexicana; será la más grande de América Latina" www.gob.mx/presidencia/...
gob.mx
Presidenta Claudia Sheinbaum presenta Clúster Nacional y Centro Mexicano de Supercómputo para hacer de México una potencia científica
En enero de 2026 arranca el Centro Mexicano en colaboración con el Centro de Supercómputo de Barcelona, para utilizar su capacidad tecnológica y resolver problemas públicos y apremiantes
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 19/11/2025
Will quantum computing be chemistry’s next AI? cen.acs.org/business/qua...
cen.acs.org
Will quantum computing be chemistry’s next AI?
Despite billion-dollar investments, the technology faces hurdles that keeps its future uncertain
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Reposted by Juan Felipe Huan Lew Yee
Kimika Teorikoa Lab @theochemehu.bsky.social · 22/09/2025
Eduard Matito and Mario Piris from our lab presenting their recent work at QVEST2025 at Schloss Ringberg @dipcehu.bsky.social @ehu.eus
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Kimika Teorikoa Lab @theochemehu.bsky.social · 20/05/2025
Check out the latest by @felipelewyee.bsky.social and Mario Piris from our lab #compchem journals.aps.org/prl/abstract...
journals.aps.org
Advancing Natural Orbital Functional Calculations through Deep Learning-Inspired Techniques for Large-Scale Strongly Correlated Electron Systems
Natural orbital functional (NOF) theory provides a valuable framework for studying strongly correlated systems at an affordable computational cost, with an accuracy comparable to highly demanding wave...
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 20/05/2025
🎉 Excited to share our latest publication in Physical Review Letters: ✨Advancing Natural Orbital Functional Calculations through Deep Learning-Inspired Techniques for Large-Scale Strongly Correlated Electron Systems✨ 🚀 Find the full article here: journals.aps.org/prl/abstract...
journals.aps.org
Advancing Natural Orbital Functional Calculations through Deep Learning-Inspired Techniques for Large-Scale Strongly Correlated Electron Systems
Natural orbital functional (NOF) theory provides a valuable framework for studying strongly correlated systems at an affordable computational cost, with an accuracy comparable to highly demanding wave...
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Reposted by Juan Felipe Huan Lew Yee
M. Rodríguez-Mayorga @marm314.bsky.social · 20/03/2025
MOLGW 3.4 is out! Want to use/test i) the G3W2 approx, ii) complex molecular orbitals, iii) X2C relativistic wavefunctions for HF/DFT calculations, iv) use alternate compilers: LLVM flang/clang++ and Intel ifx/icx ? #compchem github.com/molgw/molgw/...
github.com
MOLGW version 3.4 is out! · molgw molgw · Discussion #48
What's new in version 3.4 Overview Complex wavefunctions X2C relativistic wavefunctions for HF/DFT calculations Possibility to link with LIBCINT whatever the p-orbital ordering Support for alternat...
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Reposted by Juan Felipe Huan Lew Yee
JuliaHub @juliahub.bsky.social · 12/03/2025
Big news for Julia users! Julia is now officially supported in Google Colab, making high-performance computing & #GPU acceleration more accessible than ever. juliahub.com/blog/julia-n... #JuliaLang #GoogleColab #DataScience #AI #CloudComputing #coding #colab
juliahub.com
Julia Now Available on Google Colab
Julia is now officially available on Google Colab, enabling high-performance computing, GPU acceleration, and seamless cloud-based data science.
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Reposted by Juan Felipe Huan Lew Yee
Kimika Teorikoa Lab @theochemehu.bsky.social · 28/02/2025
Check out the latest by @daviddesancho.bsky.social and @xabierjota.bsky.social
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Reposted by Juan Felipe Huan Lew Yee
Kimika Teorikoa Lab @theochemehu.bsky.social · 24/02/2025
Check out the latest by Juan Felipe Huan Lew-Yee and Mario Piris from our laboratory @dipcehu.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Efficient Energy Measurement of Chemical Systems via One-Particle Reduced Density Matrix: A NOF-VQE Approach for Optimized Sampling
In this work, we explore the use of the one-particle reduced density matrix (1RDM) to streamline energy measurements of chemical systems on quantum computers, particularly within the variational quant...
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Juan Felipe Huan Lew Yee @felipelewyee.bsky.social · 24/02/2025
✨ Excited to share our new paper: "Efficient Energy Measurement of Chemical Systems via One-Particle Reduced Density Matrix: A NOF-VQE Approach for Optimized Sampling" by Felipe Lew-Yee and Mario Piris ⚛️ Read the full paper here: pubs.acs.org/doi/10.1021/...
pubs.acs.org
Efficient Energy Measurement of Chemical Systems via One-Particle Reduced Density Matrix: A NOF-VQE Approach for Optimized Sampling
In this work, we explore the use of the one-particle reduced density matrix (1RDM) to streamline energy measurements of chemical systems on quantum computers, particularly within the variational quantum eigensolver (VQE) framework. This approach leverages the existence of an exact energy functional of the 1RDM, enabling a reduction in both the number of expectation values to measure and the number of circuits to execute, thereby optimizing quantum resource usage. Specifically, sampling the 1RDM involves measuring only elements, which is significantly fewer than the required for the Hamiltonian’s expectation value ⟨Ĥ⟩. We demonstrate our approach by harnessing the well-established natural orbital functional (NOF) theory, using the natural orbitals and occupation numbers derived from the diagonalization of the 1RDM measured from the quantum computer. Starting with the H2 system, we validate the accuracy of our method by comparing the energy derived from NOF approximations applied to the exact wave function with the value obtained from ⟨Ĥ⟩. This is followed by an optimization of the gate parameters by minimizing the energy using the NOF approximations as the objective function. The analysis is extended to larger systems, such as LiH, Li2, OH–, FH, NeH+, and F2 using a wave function ansatz with single and double excitation gates. This NOF-based method reduces the scaling cost of circuit executions compared to standard VQE implementations, achieving around 90% savings in the systems used in this work. Overall, by using a well-performing NOF as the objective function, the proposed NOF-VQE demonstrates the viability of NOF approximations for obtaining accurate energies in the noisy intermediate-scale quantum era and underscores the potential for developing new functionals tailored to quantum computing applications.
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Reposted by Juan Felipe Huan Lew Yee
imitxelena003 @imitxelena003.bsky.social · 25/11/2024
Open-source software to carry-out NOFT calculations on molecules (energy, geom opt ...); strong-correlation friendly! code: github.com/DoNOF/DoNOFsw documentation: donof-documentation.readthedocs.io/en/latest/in... #compchem
github.com
GitHub - DoNOF/DoNOFsw: Donostia Natural Orbital Functional Software
Donostia Natural Orbital Functional Software. Contribute to DoNOF/DoNOFsw development by creating an account on GitHub.
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