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The Computational Spectroscopy Group at University of Groningen

@compspecgroup.bsky.social
262 followers 429 following 30 posts

Quantum Dynamics, Ultrafast Spectroscopy Simulations, Computational Chemistry, Theoretical Physics computationalspectroscopy.eu

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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 30/09/2026
It was great welcoming Mustafa and Krishna from the @photocam-msca.bsky.social in Groningen!
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 17/09/2026
We are excited to welcome Juergen Hauer @hauer-lab.bsky.social for the mini-symposium organized in Groningen in connection with the PhD-defense of Mónica Espinoza Canghuala!
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 14/09/2026
Congratulations to Marick Manrho with the great thesis and the PhD degree! Good luck at AFM!
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 11/09/2026
Curious about life as a PhD student? Playing with AI we developed a game that may let you take the challenge computationalspectroscopy.eu/PhD-game/
computationalspectroscopy.eu
PhD Life Game
PhD Life Game - A pedagogical browser game where you experience the journey of a PhD student through challenging choices and real-world scenarios. Build your skills, navigate obstacles, and shape your...
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 17/08/2026
pubs.rsc.org/sc/article/d... Congratulations to Stephanie, Sayan, Amitav and Vivek Tiwari with this joint paper on fluorescence detected spectroscopy and energy transfer in cyanobacterial light harvesting complexes.
pubs.rsc.org
Submit This Form
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Reposted by The Computational Spectroscopy Group at University of Groningen
Science Newsroom - Faculty of Science and Engineering - UG @sciencenewsroom-ug.bsky.social · 08/07/2026
🦠 The green sulfur bacterium as an inspiration for a new generation of solar cells? @rug.nl Physicist Thomas La Cour Jansen studies how the structure of this unique bacterium allows it to harvest energy from light so efficiently. Curious? Read more👇 🔗 www.rug.nl/fse/news/sci... 🧪 #SciComm
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 09/07/2026
Have you ever wondered what is beyond FRET? You did not think it could be important for energy transfer in biology? You are in for a surprise! Check our newest paper with Gijsbert ten Hoven as first author... @zernike-institute.bsky.social @rug.nl pubs.aip.org/aip/jcp/arti...
pubs.aip.org
Fourth-order extension of multichromophoric Förster energy transfer
Excited state energy transfer (EET) is an essential process in many systems with optical functionality, such as photosynthetic systems, photovoltaic materials,
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 16/05/2026
Congratulations to Kim for making the cover of JCP (of @aip.bsky.social) with her cool TOC figure! pubs.aip.org/aip/jcp/issu... Check out the paper behind on the infrared spectroscopy of PsbS! @zernike-institute.bsky.social @icfo.eu @nikinikki87.bsky.social
pubs.aip.org
Volume 164 Issue 18 | The Journal of Chemical Physics | AIP Publishing
The Journal of Chemical Physics is an international journal that publishes cutting edge research in all areas of modern physical chemistry and chemical physics. The Journal also publishes brief commun...
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Reposted by The Computational Spectroscopy Group at University of Groningen
PhotoCaM Doctoral Network @photocam-msca.bsky.social · 27/04/2026
🚨 New Publication from the PhotoCaM Doctoral Network ! #PhotoCaM #MSCA #DoctoralNetwork
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 12/05/2026
In this work Kim van Adrichem used MD simulations at different pH as generated by @nikinikki87.bsky.social (then at VU) to predict the FTIR and 2DIR spectra revealing signatures of changes induced by pH change. doi.org/10.1063/5.03...
doi.org
Simulated pH-difference infrared spectra: Application to the PsbS monomer
In strong sunlight, plants prevent photo-oxidation by dissipating excess energy absorbed. PsbS, a membrane protein that responds to light-induced pH changes in
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 12/05/2026
We are excited to share our newest paper on infrared spectroscopy of PsbS, a protein central in the regulation of non-photochemical quenching in photosynthesis. Thanks to our collaborators @nikinikki87.bsky.social from @icfo.eu and Roberta Croce from VU Amsterdam.
doi.org
Simulated pH-difference infrared spectra: Application to the PsbS monomer
In strong sunlight, plants prevent photo-oxidation by dissipating excess energy absorbed. PsbS, a membrane protein that responds to light-induced pH changes in
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 11/03/2026
Excited to share our newest research. Stephanie developed a new algorithm for calculating Fluorescence Detected Two-Dimensional Spectroscopy which is now published in JCP @pubs.acs.org. Thanks to the PhotoCAM consortium! pubs.aip.org/aip/jcp/arti...
pubs.aip.org
Fluorescence-detected two-dimensional electronic spectroscopy: A coarse-grained simulation approach
Fluorescence-detected two-dimensional electronic spectroscopy (F-2DES) offers superior sensitivity compared to the traditional coherent two-dimensional electron
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 19/02/2026
Thanks to co-guest-editors Andrew, Steve, Sujay, and Nils! Also thanks to all authors contributing to this JCP special issue! pubs.aip.org/aip/jcp/arti...
pubs.aip.org
Biomolecular dynamics using optical methods—Theory and experiment
Watching biological molecules move—folding, binding, transferring energy, or driving a cellular process—is at once a technical challenge and a conceptual luxury
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 18/01/2026
Congratulations to Long and all other co-authors (including @hyperbolictans.bsky.social and @phlambrev.bsky.social) on this paper on using 2D spectroscopy for studying the energy transfer in the flat part of the PSII energy landscape. pubs.acs.org/doi/10.1021/...
pubs.acs.org
Directly Measuring the Connectivity between Isoenergetic Light-Harvesting Antennas in Plant Photosystem II at Physiological Temperature
The plant photosystem II (PSII) supercomplex features a relatively “flat” energy landscape in the excitonic energy transfer (EET) network between the light-harvesting antenna and core subunits. The re...
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 07/01/2026
This suggests that the transfer towards the reaction center happens in consecutive steps between neighbouring tubes form the inside of the chlorosome to the outside driven by the entropy gain of moving to tubes containing more molecules.
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 07/01/2026
Among other things Gijsbert found that the energy transfer between neighbouring tubes is ultrafast despite being incoherent. Transfer between non-neighbouring tubes is much slower.
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 07/01/2026
We are excited to share the results of the hard work of PhD student Gijsbert ten Hoven on the energy transfer between chlorosome tubes. The chlorsomes are light-harvesting antenna of green sulphur-bacteria that can thrive at very low light conditions. pubs.aip.org/aip/jcp/arti...
pubs.aip.org
Modeling incoherent exciton transport between chlorosome tubes
Chlorosomes are the antennae of the efficient light harvesting complex in green (non-sulfur) bacteria. The ultrafast energy transfer process in natural light ha
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 26/11/2025
Excited to share our newest paper on energy transfer between two-dimensional systems with a twist: pubs.acs.org/doi/10.1021/... as published in J. Phys. Chem. Lett. @pubs.acs.org. This was part of Topmaster Nanoscience student Yieon Park's small research project. @zernike-institute.bsky.social
pubs.acs.org
Energy Transfer between Two-Dimensional Sheets: An Investigation of Chlorosome Lamella
Due to the evolutionary adaptation of photosynthetic architecture, chlorosomes are recognized as the most efficient natural light-harvesting systems. The role of the relative orientation of the two-di...
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 15/08/2025
Congratulations to dr. Kai Zhong, who just graduated with a double degree from our group at @rug.nl and that of @howesiang.bsky.social at NTU, with the Rubicon grant from NWO! He will work with Debora Marks at Harvard Medical School for the coming two years! www.rug.nl/about-ug/lat...
rug.nl
Two promising UG researchers to top institutes abroad on Rubicon grants
Two promising PhD graduates from the University of Groningen will be able to conduct research at top institutes abroad for two years thanks to the Rubicon...
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 22/06/2025
Congratulation dr. Zhong!
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 17/06/2025
It is really happening... Congratulations dr. Zhong!
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 01/04/2025
We are excited to share our newest breakthrough science! We think that we solved the worlds energy problem... youtu.be/6Hv2ScTBYxo
youtu.be
Our newest breakthrough research on gravitational wave harvesting
YouTube video by T.L.C. Jansen
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Reposted by The Computational Spectroscopy Group at University of Groningen
Zernike Institute for Advanced Materials @zernike-institute.bsky.social · 20/02/2025
Cracking the Code of Artificial Light Harvesting 🌿✨ 🔬 Read more about how slip-stacking can fine-tune light-harvesting properties! pubs.acs.org/doi/10.1021/... #Nanotechnology #ExcitonicEngineering #PhotosynthesisInspired
Maxim PchenitchnikovThomas La Cour JansenRichard Hildner
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Reposted by The Computational Spectroscopy Group at University of Groningen
Thomas La Cour Jansen @lacour.bsky.social · 23/03/2025
Getting cold feet about graduate school in the US? This interdisciplinary master prepares you for doing a PhD in Europe! For physics and chemistry background students with a bachelor or getting it this year! www.rug.nl/research/zer...
rug.nl
Introduction to Top Master Programme in Nanoscience
Information on the Zernike institute for Advanced Materials Top Master Programme in Nanoscience.
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Reposted by The Computational Spectroscopy Group at University of Groningen
Thomas La Cour Jansen @lacour.bsky.social · 25/03/2025
Want to study Nanoscience at a truly international university? Check out the topmaster Nanoscience www.rug.nl/research/zer...
rug.nl
Introduction to Top Master Programme in Nanoscience
Information on the Zernike institute for Advanced Materials Top Master Programme in Nanoscience.
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 03/03/2025
Now the first author, @mkespinozac.bsky.social also joined us on @bsky.app 🥳
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 28/02/2025
Check out our contribution to this paper on peptide hydrogels! Thanks to Ana Cunha, who did the spectral simulations and to all other co-authors! www.sciencedirect.com/science/arti...
sciencedirect.com
A comparative study between phenylglycine and phenylalanine derived peptide hydrogels: Towards atomic elucidation
Peptide hydrogels are naturally inspired soft materials which, due to their biocompatibility, are potential candidates for controlled drug delivery ma…
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 20/02/2025
Curious about how to measure the delocalization size of Frenkel excitons? In this paper, I explore using a method based on the Manhattan norm. pubs.aip.org/aip/jcp/arti...
pubs.aip.org
The Manhattan exciton size: A physically tractable delocalization measure
Delocalized excitations, denoted excitons, play an important role in many systems in chemical physics. The characterization of their extent of delocalization is
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Reposted by The Computational Spectroscopy Group at University of Groningen
Zernike Institute for Advanced Materials @zernike-institute.bsky.social · 29/01/2025
Have a look at our handpicked "Best of 2024" publications - the personal research highlights of our principal investigators. These are original research works, reviews, or patents authored or co-authored by our team members. Enjoy the science: www.rug.nl/research/zer...
a stack of scientific publications
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 19/02/2025
Learn how we used fluorescence spectroscopy to learn more about the molecular structure of double-walled nanotube aggregates. This was done in collaboration with the Hildner and Pshenichnikov groups at the @zernike-institute.bsky.social pubs.acs.org/doi/full/10....
pubs.acs.org
Linear Dichroism Microscopy Resolves Competing Structural Models of a Synthetic Light-Harvesting Complex
The initial stages of photosynthesis in light-harvesting antennae, driven by excitonic energy transport, have inspired the design of artificial light-harvesting complexes. Double-walled nanotubes (DWN...
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 17/02/2025
Interested in Computational Spectroscopy - beyond molecules. Check this 2021 perspective: pubs.aip.org/aip/jcp/arti...
pubs.aip.org
Computational spectroscopy of complex systems
Numerous linear and non-linear spectroscopic techniques have been developed to elucidate structural and functional information of complex systems ranging from n
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 06/02/2025
Check out our recent review on cylindrical molecular aggregates! pubs.aip.org/aip/cpr/arti...
pubs.aip.org
Electronically excited states in cylindrical molecular aggregates: Exciton delocalization, dynamics, and optical response
For almost 100 years molecular aggregates have attracted considerable scientific attention, because their electronically excited states feature interesting coll
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 06/02/2025
We are excited to share the latest research from our lab on dimer formation of self-aggregating dye molecules. Check out the work of Mónica, and our experimental collaborators Sundar, Alexey, and Maxim! pubs.aip.org/aip/jcp/arti...
pubs.aip.org
The first step of cyanine dye self-assembly: Dimerization
Self-assembling amphiphilic cyanine dyes, such as C8S3, are promising candidates for energy storage and optoelectronic applications due to their efficient energ
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 14/01/2025
We are excited to share our most recent paper on energy transfer in multi-chromophoric systems: pubs.acs.org/doi/full/10.... This was a great group effort involving many current and past group members. Thanks to Kai for taking the lead!
pubs.acs.org
Application of the Time-Domain Multichromophoric Fluorescence Resonant Energy Transfer Method in the NISE Programme
We present the implementation of the time-domain multichromophoric fluorescence resonant energy transfer (TC-MCFRET) approach in the numerical integration of the Schrödinger equation (NISE) program. This method enables the efficient simulation of incoherent energy transfer between distinct segments within large and complex molecular systems, such as photosynthetic complexes. Our approach incorporates a segmentation protocol to divide these systems into manageable components and a modified thermal correction to ensure detailed balance. The implementation allows us to calculate the energy transfer rate in the NISE program systematically and easily. To validate our method, we applied it to a range of test cases, including parallel linear aggregates and biologically relevant systems like the B850 rings from LH2 and the Fenna-Matthews-Olson complex. Our results show excellent agreement with previous studies, demonstrating the accuracy and efficiency of our TD-MCFRET method. We anticipate that this approach will be widely applicable to the calculation of energy transfer rates in other large molecular systems and will pave the way for future simulations of multidimensional electronic spectra.
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 18/12/2024
Meet our group member Mónica K. Espinoza Cangahuala in the Zernike Institute Advent calendar www.rug.nl/research/zer...
rug.nl
Advent calendar - December 11th - Mónica K. Espinoza Cangahuala
Advent calendar - December 11th - Mónica K. Espinoza Cangahuala
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The Computational Spectroscopy Group at University of Groningen @compspecgroup.bsky.social · 08/12/2024
Let's start our new BlueSky account with 'Keeping Spectroscopy Weird'. Thanks to the group members for the T-Shirt and @plunje.bsky.social for organising the surprise party... Thanks to @tamalika.bsky.social for taking and sharing the photo.
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