@inproceedings{54863,
  author       = {{Schmüser, Juliane and Ramulu, Harshini Sri and Wöhler, Noah and Stransky, Christian and Bensmann, Felix and Dimitrov, Dimitar and Schellhammer, Sebastian and Wermke, Dominik and Dietze, Stefan and Acar, Yasemin and Fahl, Sascha}},
  booktitle    = {{Proceedings of the CHI Conference on Human Factors in Computing Systems, CHI 2024, Honolulu, HI, USA, May 11-16, 2024}},
  editor       = {{Mueller, Florian ’Floyd’ and Kyburz, Penny and Williamson, Julie R. and Sas, Corina and Wilson, Max L. and Dugas, Phoebe O. Toups and Shklovski, Irina}},
  pages        = {{574:1–574:16}},
  publisher    = {{ACM}},
  title        = {{{Analyzing Security and Privacy Advice During the 2022 Russian Invasion of Ukraine on Twitter}}},
  doi          = {{10.1145/3613904.3642826}},
  year         = {{2024}},
}

@inproceedings{54862,
  author       = {{Boughton, Lina and Miller, Courtney and Acar, Yasemin and Wermke, Dominik and Kästner, Christian}},
  booktitle    = {{Proceedings of the 2024 {ACM/IEEE} 44th International Conference on Software Engineering: New Ideas and Emerging Results, NIER@ICSE 2024, Lisbon, Portugal, April 14-20, 2024}},
  pages        = {{57–61}},
  publisher    = {{ACM}},
  title        = {{{Decomposing and Measuring Trust in Open-Source Software Supply Chains}}},
  doi          = {{10.1145/3639476.3639775}},
  year         = {{2024}},
}

@article{54864,
  author       = {{Horstmann, Stefan Albert and Domiks, Samuel and Gutfleisch, Marco and Tran, Mindy and Acar, Yasemin and Moonsamy, Veelasha and Naiakshina, Alena}},
  journal      = {{Proc. Priv. Enhancing Technol.}},
  number       = {{1}},
  pages        = {{151–170}},
  title        = {{{"Those things are written by lawyers, and programmers are reading that." Mapping the Communication Gap Between Software Developers and Privacy Experts}}},
  doi          = {{10.56553/POPETS-2024-0010}},
  volume       = {{2024}},
  year         = {{2024}},
}

@inproceedings{53848,
  author       = {{Nicolai, Marcel and Bulling, Jannis and Lugovtsova, Yevgeniya and Zeipert, Henning and Prager, Jens and Henning, Bernd}},
  booktitle    = {{Fortschritte der Akustik - DAGA 2024}},
  editor       = {{Gesellschaft für Akustik e.V., Deutsche}},
  pages        = {{632–635}},
  title        = {{{On the repulsion effect of coupled Lamb wave modes}}},
  year         = {{2024}},
}

@inproceedings{54788,
  author       = {{Hetkämper, Tim and Nellius, Tom and Claes, Leander and Henning, Bernd}},
  booktitle    = {{22. GMA/ITG-Fachtagung – Sensoren und Messsysteme 2024}},
  isbn         = {{978-3-910600-01-0}},
  pages        = {{362–367}},
  publisher    = {{VDE Verlag GmbH}},
  title        = {{{Visualisierung tomografischer Daten aus Schlierenabbildungen mittels 3D Gaussian Splatting}}},
  doi          = {{10.5162/sensoren2024/D4.2}},
  year         = {{2024}},
}

@article{54962,
  author       = {{Hetkämper, Tim and Claes, Leander and Henning, Bernd}},
  issn         = {{2569–1600}},
  journal      = {{Akustik Journal}},
  pages        = {{18 -- 25}},
  publisher    = {{Deutsche Gesellschaft für Akustik e.V. (DEGA)}},
  title        = {{{Das Unhörbare sehen - Ultraschall mittels Schlierentechnik visualisieren}}},
  volume       = {{2}},
  year         = {{2024}},
}

@article{32447,
  abstract     = {{We present a new gradient-like dynamical system related to unconstrained convex smooth multiobjective optimization which involves inertial effects and asymptotic vanishing damping. To the best of our knowledge, this system is the first inertial gradient-like system for multiobjective optimization problems including asymptotic vanishing damping, expanding the ideas previously laid out in [H. Attouch and G. Garrigos, Multiobjective Optimization: An Inertial Dynamical Approach to Pareto Optima, preprint, arXiv:1506.02823, 2015]. We prove existence of solutions to this system in finite dimensions and further prove that its bounded solutions converge weakly to weakly Pareto optimal points. In addition, we obtain a convergence rate of order \(\mathcal{O}(t^{-2})\) for the function values measured with a merit function. This approach presents a good basis for the development of fast gradient methods for multiobjective optimization.}},
  author       = {{Sonntag, Konstantin and Peitz, Sebastian}},
  issn         = {{1095-7189}},
  journal      = {{SIAM Journal on Optimization}},
  keywords     = {{multiobjective optimization, Pareto optimization, Lyapunov analysis, gradient-likedynamical systems, inertial dynamics, asymptotic vanishing damping, fast convergence}},
  number       = {{3}},
  pages        = {{2259 -- 2286}},
  publisher    = {{Society for Industrial and Applied Mathematics}},
  title        = {{{Fast Convergence of Inertial Multiobjective Gradient-Like Systems with Asymptotic Vanishing Damping}}},
  doi          = {{10.1137/23M1588512}},
  volume       = {{34}},
  year         = {{2024}},
}

@misc{55002,
  author       = {{Delgado Steuter, Dominik}},
  title        = {{{Realizing Concurrency on Top of the Microkernel seL4 via Improved Threads }}},
  year         = {{2024}},
}

@misc{55003,
  author       = {{Artmann, Matthias}},
  title        = {{{On the Shape Containment Problem within the Amoebot Model with Reconfigurable Circuits}}},
  year         = {{2024}},
}

@misc{55039,
  author       = {{Hetkämper, Tim and Meihost, Lars}},
  title        = {{{Bits und Bytes - Mikrocontroller verstehen mit modularer Hardware}}},
  year         = {{2024}},
}

@misc{55092,
  author       = {{Eranki, Varun Maitreya}},
  title        = {{{Fever: Optimal Responsive View Synchronisation}}},
  year         = {{2024}},
}

@inproceedings{53816,
  abstract     = {{Augmented (AR) and Virtual Reality (VR) technologies have been applied very broadly in the recent past. While prior work emphasizes the potential of these technologies in various application domains, the process of visual attention in and across the contexts of AR/VR environments is not exhaustively explored yet. By now, visual attention in AR/VR environments has majorly been studied by means of overt attention (i.e. saccadic eye movements), self-report, and process-related visual attention proxies (like reaction time). In this work, we analyze covert visual attention based on the (psychological) Theory of Visual Attention (TVA), which allows us to quantify theory-based interpretable properties of the visual attention process. For example, the TVA allows us to measure the overall processing speed. We instantiate this TVA-based framework with a 30-participant explorative within-subjects study. The results show a decisive difference in visual attention between Reality (i.e. the neutral condition) and Virtual Reality and a weak difference between Reality and Augmented Reality. We discuss the consequences of our findings and provide ideas for future studies.}},
  author       = {{Biermeier, Kai and Scharlau, Ingrid and Yigitbas, Enes}},
  booktitle    = {{Proceedings of the 17th International Conference on PErvasive Technologies Related to Assistive Environments (PETRA 2024)}},
  keywords     = {{Visual Attention, TVA, Cognitive Modelling, Bayesian Modelling, AR, VR}},
  publisher    = {{ACM}},
  title        = {{{Measuring Visual Attention Capacity Across xReality}}},
  doi          = {{10.1145/3652037.3652050}},
  year         = {{2024}},
}

@inproceedings{55191,
  author       = {{Rezat, Sebastian and Visnovska, Jana and Yan, Guorui and Leshota, Moneoang and Sabra, Hussein}},
  booktitle    = {{Proceedings of the 14th International Congress on Mathematical Education}},
  keywords     = {{Mathematics, Mathematik, Textbook, Curriculum Resources, Schulbuch}},
  pages        = {{537–545}},
  publisher    = {{World Scientific}},
  title        = {{{Topic Study Group 41: Research and development on textbooks and resources for learning and teaching mathematics}}},
  doi          = {{10.1142/9789811287152_0065}},
  volume       = {{1}},
  year         = {{2024}},
}

@inproceedings{54807,
  abstract     = {{This paper considers the shape formation problem within the 3D hybrid model, where a single agent with a strictly limited viewing range and the computational capacity of a deterministic finite automaton manipulates passive tiles through pick-up, movement, and placement actions. The goal is to reconfigure a set of tiles into a specific shape termed an icicle. The icicle, identified as a dense, hole-free structure, is strategically chosen to function as an intermediate shape for more intricate shape formation tasks. It is designed for easy exploration by a finite state agent, enabling the identification of tiles that can be lifted without breaking connectivity. Compared to the line shape, the icicle presents distinct advantages, including a reduced diameter and the presence of multiple removable tiles. We propose an algorithm that transforms an arbitrary initially connected tile structure into an icicle in 𝒪(n³) steps, matching the runtime of the line formation algorithm from prior work. Our theoretical contribution is accompanied by an extensive experimental analysis, indicating that our algorithm decreases the diameter of tile structures on average.}},
  author       = {{Hinnenthal, Kristian and Liedtke, David Jan and Scheideler, Christian}},
  booktitle    = {{3rd Symposium on Algorithmic Foundations of Dynamic Networks (SAND 2024)}},
  editor       = {{Casteigts, Arnaud and Kuhn, Fabian}},
  isbn         = {{978-3-95977-315-7}},
  issn         = {{1868-8969}},
  keywords     = {{Programmable Matter, Shape Formation, 3D Model, Finite Automaton}},
  pages        = {{15:1–15:20}},
  publisher    = {{Schloss Dagstuhl – Leibniz-Zentrum für Informatik}},
  title        = {{{Efficient Shape Formation by 3D Hybrid Programmable Matter: An Algorithm for Low Diameter Intermediate Structures}}},
  doi          = {{10.4230/LIPIcs.SAND.2024.15}},
  volume       = {{292}},
  year         = {{2024}},
}

@inbook{54802,
  abstract     = {{Motivated by the prospect of nano-robots that assist human physiological functions at the nanoscale, we investigate the coating problem in the three-dimensional model for hybrid programmable matter. In this model, a single agent with strictly limited viewing range and the computational capability of a deterministic finite automaton can act on passive tiles by picking up a tile, moving, and placing it at some spot. The goal of the coating problem is to fill each node of some surface graph of size n with a tile. We first solve the problem on a restricted class of graphs with a single tile type, and then use constantly many tile types to encode this graph in certain surface graphs capturing the surface of 3D objects. Our algorithm requires O(n^2) steps, which is worst-case optimal compared to an agent with global knowledge and no memory restrictions.}},
  author       = {{Kostitsyna, Irina and Liedtke, David Jan and Scheideler, Christian}},
  booktitle    = {{Structural Information and Communication Complexity}},
  editor       = {{Emek, Yuval}},
  isbn         = {{9783031606021}},
  issn         = {{0302-9743}},
  keywords     = {{Programmable Matter, Coating, Finite Automaton, 3D}},
  publisher    = {{Springer Nature Switzerland}},
  title        = {{{Universal Coating by 3D Hybrid Programmable Matter}}},
  doi          = {{10.1007/978-3-031-60603-8_21}},
  year         = {{2024}},
}

@article{54668,
  abstract     = {{Samples of dielectric optical waveguides of rib or strip type in thin-film lithium niobate (TFLN) technology are characterized with respect to their optical loss using the Fabry-Pérot method. Attributing the losses mainly to sidewall roughness, we employ a simple perturbational procedure, based on rigorously computed mode profiles of idealized channels, to estimate the attenuation for waveguides with different cross sections. A single fit parameter suffices for an adequate modelling of the effect of the waveguide geometry on the loss levels.}},
  author       = {{Hammer, Manfred and Babel, Silia and Farheen, Henna and Padberg, Laura and Scheytt, J. Christoph and Silberhorn, Christine and Förstner, Jens}},
  issn         = {{1094-4087}},
  journal      = {{Optics Express}},
  keywords     = {{tet_topic_waveguide}},
  number       = {{13}},
  pages        = {{22878}},
  publisher    = {{Optica Publishing Group}},
  title        = {{{Estimation of losses caused by sidewall roughness in thin-film lithium niobate rib and strip waveguides}}},
  doi          = {{10.1364/oe.521766}},
  volume       = {{32}},
  year         = {{2024}},
}

@article{52700,
  abstract     = {{We explore the polarization hysteretic behaviour and field-dependent permittivity of ferroelectric-dielectric 2D materials formed by random dispersions of low permittivity inclusions in a ferroelectric matrix, using finite element simulations. We show how the degree of impenetrability of dielectric inclusions plays a substantial role in controlling the coercive field, remnant and saturation polarizations of the homogenized materials. The results highlight the significance of the degree of impenetrability of inclusion in tuning the effective polarization properties of such ferroelectric composites: coercive field drops significantly as percolation threshold is attained and remnant polarization decreases faster than a linear decay.}},
  author       = {{Myroshnychenko, Viktor and Mulavarickal Jose, Pious Mathews and Farheen, Henna and Ejaz, Shafaq and Brosseau, Christian and Förstner, Jens}},
  issn         = {{0031-8949}},
  journal      = {{Physica Scripta}},
  keywords     = {{tet_topic_ferro}},
  number       = {{4}},
  pages        = {{045952}},
  publisher    = {{IOP Publishing}},
  title        = {{{From Swiss-cheese to discrete ferroelectric composites: assessing the ferroelectric butterfly shape in polarization loops}}},
  doi          = {{10.1088/1402-4896/ad3172}},
  volume       = {{99}},
  year         = {{2024}},
}

@inproceedings{55329,
  author       = {{Nicolai, Marcel and Bulling, Jannis and Lugovtsova, Yevgeniya and Zeipert, Henning and Prager, Jens and Henning, Bernd}},
  location     = {{Amsterdam}},
  title        = {{{On the repulsion effect of coupled Lamb waves modes}}},
  year         = {{2024}},
}

@inproceedings{50807,
  author       = {{Hu, Haichuan and Liu, Fangming and Pei, Qiangyu and Yuan, Yongjie and Xu, Zichen and Wang, Lin}},
  booktitle    = {{Proceedings of the ACM Web Conference (WWW)}},
  location     = {{Singapore}},
  publisher    = {{ACM}},
  title        = {{{𝜆Grapher: A Resource-Efficient Serverless System for GNN Serving through Graph Sharing}}},
  doi          = {{10.1145/3589334.3645383}},
  year         = {{2024}},
}

@article{53531,
  author       = {{Ghafouri, Saeid and Razavi, Kamran and Salmani, Mehran and Sanaee, Alireza and Lorido Botran, Tania  and Wang, Lin and Doyle, Joseph and Jamshidi, Pooyan}},
  journal      = {{Journal of Systems Research (JSys)}},
  title        = {{{IPA: Inference Pipeline Adaptation to Achieve High Accuracy and Cost-Efficiency}}},
  year         = {{2024}},
}

