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CMES Newsletter

Latest news about Middle Eastern research at Lund University The CMES Newsletter provides an up-to-date overview of Middle Eastern research, activities and events at Lund University and beyond. Read the latest CMES Newsletter Subscribe to the CMES Newsletter 2026 June 2026 CMES Newsletter #61May 2026 CMES Newsletter #60April 2026 CMES Newsletter #59March 2026 CMES Newsletter #58February 2026 CMES

https://www.cmes.lu.se/outreach/cmes-newsletter - 2026-09-13

Tova Bennet

Associate senior lecturer Contact details Email: tova [dot] bennet [at] jur [dot] lu [dot] se Phone: +46 46 222 10 25Organisation Department of Law Room number: 330 Service point: 56 WebpageTova Bennets profile in Lund University research portalOther affiliations Visiting research fellow Health Law Researcher Criminal Law Visiting research fellow Law and Vulnerabilities Visiting lecturer Departmen

https://www.law.lu.se/tova-bennet - 2026-09-14

Vidar Flodgren

Visiting research fellow Contact details Email: vidar [dot] flodgren [at] fysik [dot] lu [dot] seOrganisation Synchrotron Radiation Research Service point: 14 WebpageVidar Flodgrens profile in Lund University research portalOther affiliations Member of Strategic Research Area NanoLund: Centre for Nanoscience Profile area member Lund Laser Centre, LLC Profile area member LTH Profile Area: Nanoscien

https://www.sljus.lu.se/vidar-flodgren - 2026-09-14

Chiara Le Roux

Affiliated Contact details Email: chiara [dot] le_roux [at] fysik [dot] lu [dot] seOrganisation Particle and nuclear physics Service point: 14 WebpageChiara Le Rouxs profile in Lund University research portal Publications Displaying of publications. Sorted by year, then title. Filter by type AllArticleDoctoral Thesis (compilation)Preprint (in preprint archive) Filter Medium effects in small system

https://www.particle-nuclear.lu.se/chiara-le-roux - 2026-09-14

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The efficiency and durability of Polymer Electrolyte Fuel Cells (PEFCs) depend on optimizing porous media components such as gas diffusion and catalyst layers. In parallel, the Lattice Boltzmann Method (LBM) has emerged as a powerful tool to model fluid flow, mass transport, and multiphase interactions in complex porous structures. This works provides a concise overview of recent advances in apply

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Three different semiconductor nanowires are combined into a single optoelectronic artificial neuron. Our device provides a path towards low power computations with significantly reduced circuit footprint, thus addressing critical limitations in neuromorphic photonics. The false-coloured scanning electron micrograph shown in Figure 1a depicts the fabricated nanowire neuron. Two pin-doped InP nanowi

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Intense ultrashort-pulsed laser systems based on Ti:sapphire chirped pulse amplifiers (CPA) operating at 800 nm have been a workhorse of ultrafast science for several decades. More recently, driven by the progress in laser technology, sources with central wavelengths further in the infrared have emerged as powerful tools, in particular to generate soft X-ray (SXR) radiation via high-harmonic gener

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Photonics-based approaches to neuromorphic hardware offer advantages in speed and connectivity but often suffer from large device footprints.[1] Here, we present an ultra-compact artificial neuron built from semiconductor nanowires. A scanning electron micrograph of the nanowire device is presented in Figure 1a. Inside the dashed box, we show the neuron built from three III-V nanowires - two InP p

Torvald Larsson

Senior lecturer Contact details Email: torvald [dot] larsson [at] jur [dot] lu [dot] se Phone: +46 46 222 10 30Organisation Department of Law Room number: 263 Service point: 56 WebpageTorvald Larssons profile in Lund University research portalOther affiliations Researcher Public Law Visiting lecturer Department of Psychology Publications Displaying of publications. Sorted by year, then title. Filt

https://www.law.lu.se/torvald-larsson - 2026-09-14

CAGT publications

Publications from collaborations (CAGT authors) Corneo, B., Faga, G.,(…)Batlle-Morera, L. (2026). The transformative impact of stem cell core facilities in biomedical research. Stem Cell Reports, 103047. https://doi.org/10.1016/j.stemcr.2026.103047Macedo, T., De Guidi, C.,(…)Alves-Lopes, J. P. (2026). Human iPSCs derived from cryopreserved testicular somatic cells enable germline regeneration in c

https://www.stemcellcenter.lu.se/cellandgene/publications - 2026-09-13