M. Rodríguez-Mayorga
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marm314.bsky.social
M. Rodríguez-Mayorga
@marm314.bsky.social
Postdoctoral researcher @LCPQ
Theoretical Chemist #compchem
https://drmarm314.wordpress.com/2019/03/26/index/
doi.org/10.1063/5.0288278 Abinit 2025: New capabilities for the predictive modeling of solids and nanomaterials. #compchem
Abinit 2025: New capabilities for the predictive modeling of solids and nanomaterials
Abinit is a widely used scientific software package implementing density functional theory and many related functionalities for excited states and response prop
doi.org
October 29, 2025 at 1:18 PM
Reposted by M. Rodríguez-Mayorga
Professor Emeritus Axel D. Becke @dalhousieu.bsky.social has passed away at age 72.
October 26, 2025 at 2:46 PM
ABINIT School 2026

Learning electronic structure calculations using ABINIT

Feb. 2 - 6 2026 - Bruyères-le-Châtel, France abischool.abinit.org
ABINIT School
Learning electronic structure calculations using ABINIT
abischool.abinit.org
October 21, 2025 at 4:19 AM
Reposted by M. Rodríguez-Mayorga
#compchem Using topology for understanding your computational results (J. Contreras-Garcia, collaboration A. Pendas) www.degruyterbrill.com/document/doi...
Using topology for understanding your computational results
The integration of quantum theory (QT) into chemistry has significantly enhanced computational accuracy, yet challenges remain in translating quantum mechanical results into intuitive chemical concept...
www.degruyterbrill.com
October 5, 2025 at 12:33 PM
Reposted by M. Rodríguez-Mayorga
Eduard Matito and Mario Piris from our lab presenting their recent work at QVEST2025 at Schloss Ringberg
@dipcehu.bsky.social
@ehu.eus
September 22, 2025 at 10:40 AM
Reposted by M. Rodríguez-Mayorga
🚨Abstracts for POSTERS still accepted🚨

➡️ jtms2025.sciencesconf.org

Don't forget to complete your registration/payment before October 10th⚠️

@reseauscf.bsky.social
@sfp-physique.bsky.social
@cecamevents.bsky.social
@icmcb.bsky.social
@icgmmontpellier.bsky.social
@univbordeaux.bsky.social
September 22, 2025 at 1:52 PM
Reposted by M. Rodríguez-Mayorga
New preprint online today - spearheaded by my very talented postdoc, Jonas - on a new reusable, open-source software implementation of the second-order trust region algorithm:

arxiv.org/abs/2509.13931

Here are some of the reasons why this library may be useful for a great many in our community. 👇
A Reusable Library for Second-Order Orbital Optimization Using the Trust Region Method
We present a reusable, open-source software implementation of the second-order trust region algorithm in the new OpenTrustRegion library. We apply the implementation to the general-purpose optimizatio...
arxiv.org
September 18, 2025 at 7:24 AM
Reposted by M. Rodríguez-Mayorga
Reposted by M. Rodríguez-Mayorga
The call is now live. Please see this thread for further information:

bsky.app/profile/janu...
#chempostdoc #chemsky 🧪⚗️
I will soon advertise a call for a 2y-postdoc position in my group intended for a talented, motivated, and ambitious candidate to help develop new ways to promote bonds as kernels in the interpretation of chemical simulations.
August 21, 2025 at 10:58 AM
Interested in condensed matter? There is a new paper describing the most recent capabilities included in Abinit. Thrilled to have contributed to it 😎! arxiv.org/abs/2507.08578
Abinit 2025: New Capabilities for the Predictive Modeling of Solids and Nanomaterials
Abinit is a widely used scientific software package implementing density functional theory and many related functionalities for excited states and response properties. This paper presents the novel fe...
arxiv.org
July 14, 2025 at 1:39 PM
Reposted by M. Rodríguez-Mayorga
Very short follow-up after the ridiculous part I. Short excitation-based CI of RG states converges quickly.

(ordinarily, I'd reply to a post from @titouloos.bsky.social )

arxiv.org/abs/2506.09379
Richardson-Gaudin states of non-zero seniority II: Single-reference treatment of strong correlation
Strongly correlated systems are well described as a configuration interaction of Slater determinants classified by their number of unpaired electrons. This treatment is however unfeasible. In this man...
arxiv.org
June 12, 2025 at 3:00 PM
Reposted by M. Rodríguez-Mayorga
#compchem Vacuum polarization in a one-dimensional effective quantum-electrodynamics model (T. Audinet, J. Toulouse, collaboration A. Levitt) iopscience.iop.org/article/10.1...
iopscience.iop.org
May 25, 2025 at 5:07 PM
Reposted by M. Rodríguez-Mayorga
🎉 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...
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...
journals.aps.org
May 20, 2025 at 3:02 PM
Reposted by M. Rodríguez-Mayorga
Vacancies
www.chalmers.se
March 29, 2025 at 3:11 PM
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/...
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...
github.com
March 20, 2025 at 9:51 AM
Reposted by M. Rodríguez-Mayorga
I (pre-)processed 150 submissions to Theor. Chem. Acc. during Jan-Feb. Some tips for first #compchem users:
- #DFT is by far the most used method, but it needs some benchmarking too
- Don’t describe the results, tell us a story
- Take seriously the cover letter and the list of reviewers suggested
March 1, 2025 at 11:35 AM
Reposted by M. Rodríguez-Mayorga
✨ 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/...
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.
pubs.acs.org
February 24, 2025 at 11:49 AM
Reposted by M. Rodríguez-Mayorga
Less than two weeks left to register for the 2025 CECAM Flagship school in computational photochemistry: shorturl.at/xsbEa with lectures from Basile Curchod, Javier Segarra, Javier Cerezo, Roger Bello and myself. Please spread the word!
#compchem #compchemsky
CECAM - Quantum and Mixed Quantum Classical Dynamics in Photochemistry
shorturl.at
February 15, 2025 at 7:36 AM
Reposted by M. Rodríguez-Mayorga
The #EU should dedicate substantial resources to attracting American top reseach talent, asap. Then double research funding, collectively and nationally. It’s time to pick up the ball. www.science.org/content/arti...
‘My boss was crying.’ NSF confronts potentially massive layoffs and budget cuts
Trump could propose slashing agency’s budget by two-thirds
www.science.org
February 15, 2025 at 9:00 PM