| [101] | Virtual Sky Domes - Making the CIE/ISO Standard General Sky available for CAD-based light simulation software (Stephen K Wittkopf, Erika Yuniarti, L K Soon and Lars Oliver Grobe), 2006. |
| [100] | Hagia Sophia - Dealing with an extraordinary ancient building and complex materials (Lars Oliver Grobe, Oliver Hauck, Andreas Noback and Bernd Zeimetz), 7th International Radiance Workshop, 2008. |
| [99] | Per-pixel sky luminance with HDR photography (Axel Jacobs, Stephen K Wittkopf and Lars Oliver Grobe), 7th International Radiance Workshop, 2008. |
| [98] | Visualizations of the interior of Hagia Sophia, Istanbul: Exhibition at Universitäts- und Landesbibliothek Darmstadt (Andreas Noback, Oliver Hauck and Lars Oliver Grobe), Chapter in Einblicke in den virtuellen Himmel: neue und alte Bilder vom Inneren der Hagia Sophia in Istanbul. Katalog zur Ausstellung in der Universitäts- und Landesbibliothek Darmstadt, Wasmuth Ernst Verlag, 2008. |
| [97] | Demonstration and test bedding of four glazing types in daylight test chambers in Singapore (Stephen K Wittkopf, Anupama Rana Pandey, Lars Oliver Grobe and Apiparn P Borisuit), 2009. |
| [96] | Daylight redirection for the tropics (Lars Oliver Grobe), Colloquium at the Solar Energy Research Institute of Singapore, 2009. |
| [95] | Optical characterization of materials and structures for daylighting and PV applications. (Lars Oliver Grobe and Stephen K Wittkopf), Technical report, Solar Energy Research Institute of Singapore, 2009. |
| [94] | Experimental validation of bidirectional reflection and transmission distribution measurements of specular and scattering materials (Lars Oliver Grobe, Stephen K Wittkopf, Peter Apian-Bennewitz, Jacob C Jonsson and Mike Rubin), The International Society for Optical Engineering, 2010. |
| [93] | Das Licht in der Hagia Sophia - Eine Computersimulation (Lars Oliver Grobe, Oliver Hauck and Andreas Noback), Chapter in Byzanz - das Römerreich im Mittelalter, Falko Daim and Jörg Drauschke, 2010. |
| [92] | Experimental validation of bidirectional reflection and transmission distribution measurements of specular and scattering materials (Grobe, Lars Oliver, Wittkopf, Stephen, Apian-Bennewitz, Peter, Jonsson, Jacob C and Rubin, Mike), In Proceedings SPIE, volume 7725 Photonics for Solar Energy Systems III, 2010. |
| [91] | Experimental validation of bidirectional reflection and transmission distribution measurements of specular and scattering materials (Lars Oliver Grobe, Stephen K Wittkopf, Peter Apian-Bennewitz, Jacob C Jonsson and Mike Rubin), SPIE Photonics Europe, 2010. |
| [90] | The photon map extension for Radiance - Applications (Lars Oliver Grobe), 9th International Radiance Workshop, 2010. |
| [89] | Transfer of measured transmission distribution data into Radiance (Lars Oliver Grobe, David Geisler-Moroder and Stephen Wittkopf), 9th International Radiance Workshop, 2010. |
| [88] | Singapore\textquoterights Zero-Energy Building\textquoterights daylight monitoring system (Lars Oliver Grobe, Stephen K Wittkopf, Anupama Rana Panday, Yang Xiaoming, Ang Kian Seng, Jean-Louis Scartezzini and Stephen Selkowitz), 2010. |
| [87] | Ray tracing study for non-imaging daylight collectors (Stephen K Wittkopf, Lars Oliver Grobe, David Geisler-Moroder, Raphaël Compagnon, Jérôme Kämpf, Friedrich Linhart and Jean-Louis Scartezzini), In Solar Energy, volume 84, 2010. |
| [86] | Using PPF accumulated skies as a early planning tool for BIPV (Lars Oliver Grobe), MPVF workshop at the Solar Energy Research Institute of Singapore, 2010. |
| [85] | Complex fenestration and Radiance - a reality check from a user\textquoterights point of view (Lars Oliver Grobe and Stephen K Wittkopf), 11th International Radiance Workshop, 2012. |
| [84] | Computing the Holy Wisdom (Oliver Hauck, Andreas Noback and Lars Oliver Grobe), Chapter in Scientific Computing and Cultural Heritage - Contributions in Computational Humanities, Springer, volume 3, 2012. |
| [83] | Climate-based daylight simulation as a planning aid for the design of solar façades (Lars Oliver Grobe and Stephen K Wittkopf), Energy Forum 2013, 2013. |
| [82] | Climate-based daylight simulation as a planning aid for the design of solar façades (Lars Oliver Grobe and Stephen K Wittkopf), Economic Forum, 2013. |
| [81] | Multi-point simultaneous illuminance measurement with high dynamic range photography (Yang Xiaoming, Lars Oliver Grobe and Stephen K Wittkopf), 2013. |
| [80] | The assessment of daylight reflection from building envelopes (Yang Xiaoming, Lars Oliver Grobe and Stephen K Wittkopf), 2013. |
| [79] | Simulation of reflected daylight from building envelopes (Yang Xiaoming, Lars Oliver Grobe and Stephen K Wittkopf), 2013. |
| [78] | Klimabasierte Tageslichtsimulation als Planungshilfe für solare Fassaden (Stephen K Wittkopf and Lars Oliver Grobe), In Intelligent Bauen, 2013. |
| [77] | Tageslichtlenkung: Technik + Modellierung (Lars Oliver Grobe), Swissbau 2014: Workshop „Solare Fassaden", 2014. |
| [76] | Measurement and modeling of a daylight redirecting component (Lars Oliver Grobe, Katrin Müllner and Stephen Wittkopf), 13th International Radiance Workshop, 2014. |
| [75] | Comparison of measured and computed BSDF of a daylight redirecting component (Lars Oliver Grobe, and Andreas Noback and Stephen Wittkopf), In CISBAT 2015 International Conference on Future Buildings and Districts, EPFL, 2015. |
| [74] | A novel data-driven BSDF model to assess the performance of a daylight redirecting ceiling panel at the Calgary Airport Expansion (Grobe, Lars Oliver, Müllner, Katrin and Meyer, Björn), In PLDC 5th Global Lighting Design Convention, VIA-Verlag, 2015. |
| [73] | Progressive photon mapping for daylight redirecting components (Schregle, Roland, Grobe, Lars Oliver and Wittkopf, Stephen K), In Solar Energy, Elsevier, volume 114, 2015. |
| [72] | EvalDRC: A tool for annual characterisation of daylight redirecting components with photon mapping (Roland Schregle, Carsten Bauer, Lars Oliver Grobe and Stephen Wittkopf), In CISBAT 2015 International Conference on Future Buildings and Districts, EPFL, 2015. |
| [71] | Enhanced photon mapping in Radiance: modelling of daylight redirecting components (Lars Oliver Grobe), Workshop enhanced photon mapping in Radiance, 2015. |
| [70] | Three approaches to optimize optical properties and size of a South-facing window for spatial Daylight Autonomy (Tu\u gçe Kazanasmaz, Lars Oliver Grobe, Carsten Bauer, Marek Krehel and Stephen Wittkopf), In Building and Environment, volume 102, 2016. |
| [69] | A hybrid data-driven BSDF model to predict light transmission trough complex fenestration systems including high incident directions (Marek Krehel, Lars Oliver Grobe and Stephen Wittkopf), In Journal of Facade Design and Engineering, volume 4, 2016. |
| [68] | Accordance of light scattering from design and de-facto variants of a daylight redirecting component (Andreas Noback, Lars Oliver Grobe and Stephen Wittkopf), In Buildings, volume 6, 2016. |
| [67] | An out-of-core photon mapping approach to daylight coefficients (Roland Schregle, Lars Oliver Grobe and Stephen Wittkopf), In Journal of Building Performance Simulation, volume 9, 2016. |
| [66] | Solare Fassaden - Simulationswerkzeuge zur Tageslichtnutzung (Lars Oliver Grobe), Swissbau 2016, 2016. |
| [65] | BSDF measurements to characterize components of high-performance building envelopes: Complex Fenestration Systems and Architecture Integrated Photovoltaics (Lars Oliver Grobe), Workshop Current state of the art and the future of BSDF measurements and simulation, 2016. |
| [64] | Modeling and measuring of solar shading with retro-reflection microstructure (Papaiz, Luca, Grobe, Lars Oliver and De Michele, Giuseppe), 15th International Radiance Workshop, 2016. |
| [63] | Comparing BSDF data from a real and a virtual goniophotometer (Andreas Noback, Lars Oliver Grobe and Stephen Wittkopf), 15th International Radiance Workshop, 2016. |
| [62] | BSDF characterizing components of high-performance building envelopes: Complex fenestration systems and architecture integrated photovoltaics. (Lars Oliver Grobe), Workshop IEA SHC task definition phase integrated solutions for daylight and electric lighting, Fraunhofer Institut für Bauphysik IBP, 2016. |
| [61] | High-resolution data-driven models of Daylight Redirection Components (Lars Oliver Grobe and Stephen Wittkopf), In Journal of Facade Design and Engineering, volume 5, 2017. |
| [60] | Computational combination of the optical properties of fenestration layers at high directional resolution (Grobe, Lars Oliver), In Buildings, volume 7, 2017. |
| [59] | Scale-model and simulation-based assessments for design alternatives of daylight redirecting systems for side-lighting in an educational design room (Grobe, Lars Oliver, Aksakarya, Gizem, Altınkaya, Gülce, Ergin, Meltem, Hancı Geçit, Burçin, Kazanasmaz, Zehra Tu\u gçe, Sevinç, Zeynep and Yörük, Yasemin), In METU Journal of the Faculty of Architecture, 2017. |
| [58] | High-resolution data-driven models of daylight redirecting components (Lars Oliver Grobe and Stephen Wittkopf), (Aslıhan Tavil, O\u guz Cem Çelik, eds.), Istanbul Technical University, 2017. |
| [57] | Measuring and modelling scattering properties of Roman window glass for daylight simulation (Andreas Noback, Lars O. Grobe, Susanne Greiff, Jennifer Komp and Franziska Lang), Glass of the Caesars @ 30, 2017. |
| [56] | Photon-map rendering of an office with a RetroLuxTherm fenestration system (patent Köster) (Lars Oliver Grobe), Chapter in Christoph Reinhart. Daylighting Handbook II: Daylight simulations, dynamic façades, 2018. |
| [55] | Characterization and data-driven modeling of a retro-reflective coating in Radiance (Grobe, Lars Oliver), In Energy and Buildings, volume 162, 2018. |
| [54] | Generating high-resolution BSDFs for the direct beam component (Lee, Eleanor, Wang, Taoning, Jonsson, Jacob, Ward, Gregory, Grobe, Lars Oliver, Wienold, Jan and Geisler-Moroder, David), International Radiance Workshop, 2018. |
| [53] | Modeling the effects of daylight scattering by window glass: The case of 6th century Hagia Sophia in Istanbul (Andreas Noback, Lars O. Grobe and Franziska Lang), 21st Congress of the Association Internationale pour l'Histoire du Verre, 2018. |
| [52] | Photon mapping to accelerate daylight simulation with high resolution, data-driven fenestration models (Grobe, Lars Oliver), In Journal of Physics: Conference Series, volume 1343, 2019. |
| [51] | Photon-mapping in climate-based daylight modelling with high-resolution BSDFs (Grobe, Lars Oliver), In Energy and Buildings, volume 205, 2019. |
| [50] | Photon mapping in image-based visual comfort assessments with BSDF models of high resolution (Lars Oliver Grobe), In Journal of Building Performance Simulation, volume 12, 2019. |
| [49] | Data-driven modelling of daylight redirecting fenestration at variable directional resolution (Lars Oliver Grobe), PhD thesis, Izmir Institute of Technology, 2019. |
| [48] | \guillemotleft\textellipsis an Licht und Sonnengefunkel aber hat sie Überfluss\guillemotright: Die 3D-Innenraumrekonstruktion der Hagia Sophia in Istanbul (Svenshon, Helge, Noback, Andreas and Grobe, Lars Oliver), Chapter in Auferstehung der Antike: Archäologische Stätten digital rekonstruiert, wbg Philipp von Zabern in Wissenschaftliche Buchgesellschaft, 2019. |
| [47] | A critical literature review of spatio-temporal simulation methods for daylight glare assessment (Wasilewski, Stephen, Grobe, Lars Oliver, Wienold, Jan and Andersen, Marilyne), In SDAR Journal of Sustainable Design in Engineering of the Built Environment, volume 7, 2019. |
| [46] | Data-driven modelling of daylight scattering by Roman window glass (Grobe, Lars Oliver, Noback, Andreas and Lang, Franziska), In Journal on Computing and Cultural Heritage, ACM, volume 13, 2020. |
| [45] | Challenges in the simulation of the daylight distribution in late antique Hagia Sophia (Grobe, Lars Oliver, Nobak, Andreas and Inanici, Mehlika), (Diker, Hasan Fırat, Esmer, Mine amd Dural, Mesut, eds.), Fatih Sultan Mehmet Vakıf University, 2020. |
| [44] | Hagia Sophia\textquoterights sixth century daylighting (Noback, Andreas, Grobe, Lars Oliver and Inanici, Mehlika), (Diker, Hasan Fırat, Esmer, Mine amd Dural, Mesut, eds.), Fatih Sultan Mehmet Vakıf University, 2020. |
| [43] | An innovative facade element with controlled solar-thermal collector and storage (Wüest, Thomas, Grobe, Lars Oliver and Luible, Andreas), In Sustainability, volume 12, 2020. |
| [42] | Designing the colour, pattern and specularity of building integrated photovoltaics (Grobe, Lars Oliver, Terwilliger, Michaela and Wittkopf, Stephen), Architecture, Technology and Innovation 2020: Smart buildings, smart cities, 2020. |
| [41] | Irregular light scattering properties of innovative fenestration for comfortable and energy-efficient buildings (Grobe, Lars Oliver), Architecture, Technology and Innovation 2020: Smart buildings, smart cities, 2020. |
| [40] | Designing the colour, pattern and specularity of building integrated photovoltaics (Grobe, Lars Oliver, Terwilliger, Michaela and Wittkopf, Stephen), 2020. |
| [39] | Irregular light scattering properties of innovative fenestration for comfortable and energy-efficient buildings (Grobe, Lars Oliver), 2020. |
| [38] | Retroreflective coating for window blinds: Reconciling view, solar control and visual comfort (Papaiz, Luca, Grobe, Lars Oliver and De Michele, Giuseppe), Tectonic Press, volume 2, 2020. |
| [37] | Hagia Sophia's sixth century daylighting (Noback, Andreas, Grobe, Lars Oliver and Inanici, Mehlika), International Hagia Sophia Symposium, 2020. |
| [36] | Challenges in the simulation of the daylight distribution in late antique Hagia Sophia (Grobe, Lars Oliver, Nobak, Andreas and Inanici, Mehlika), International Hagia Sophia Symposium, 2020. |
| [35] | Preparing the past for the future: Curating a daylight simulation model of Hagia Sophia for modern data infrastructures (Noback, Andreas and Grobe, Lars Oliver), International Conference on Cultural Heritage and New Technologies CHNT25, 2020. |
| [34] | Daylight scattering by late antique window glass from Ephesus – Reconstructing the distribution of daylight in lost architecture (Grobe, Lars Oliver, Noback, Andreas, Lang, Franziska, Schintlmeister, Luise and Schwaiger, Helmut), Propylaeum ebooks, Heidelberg, Germany, volume 24, 2021. |
| [33] | Irregular light scattering properties of innovative fenestration for comfortable and energy-efficient buildings (Grobe, Lars Oliver), In , volume 10, 2021. |
| [32] | Modeling the effects of daylight scattering by window glass: The case of 6th century Hagia Sophia in Istanbul (Noback, Andreas, Grobe, Lars Oliver and Lang, Franziska), 2021. |
| [31] | Modeling specular transmission of complex fenestration systems with data-driven BSDFs (Ward, Gregory J., Wang, Taoning, Geisler-Moroder, David, Lee, Eleanor S., Grobe, Lars Oliver, Wienold, Jan and Jonsson, Jacob C.), In , volume 196, 2021. |
| [30] | Raytraverse: Navigating the lightfield to enhance climate-based daylight modeling (Wasilewski, Stephen W, Schregle, Roland, Grobe, Lars Oliver, Wienold, Jan and Andersen Marilyne), 2021. |
| [29] | Raytraverse: Navigating the lightfield to enhance climate-based daylight modeling (Wasilewski, Stephen W, Grobe, Lars Oliver, Schregle, Roland, Wienold, Jan and Andersen Marilyne), 2021. |
| [28] | Effects of phase change materials on heat flows through double skin facades (Wüest, Thomas, Grobe, Lars Oliver and Luible, Andreas), In , volume 9, 2021. |
| [27] | BSDF generation procedures for daylighting systems (Geisler-Moroder, David, Lee, Eleanor, Ward, Gregory, Bueno, Bruno, Grobe, Lars Oliver, Wang, Taoning, Deroisy, Bertrand and Wilson, Helen Rose), Technical report T61.C.2.1, International Energy Agency SHC Task 61, 2021. |
| [26] | A model chain to simulate daylight in historic built environments (Noback, Andreas, Grobe, Lars Oliver and Schuetz, Philipp), Widening horizons: 27th annual meeting of the European Association of Archaeologists, 2021. |
| [25] | Analysis and evaluation of BSDF characterization of daylighting systems (Apian-Bennewitz, Peter, de Boer, Jan, Bueno, Bruno, Deroisy, Bertrand, Fang, Yuan, Geisler-Moroder, David, Grobe, Lars Oliver, Jonsson, Jacob C., Lee, Eleanor S., Tian, Zhen, Wang, Tiaoning, Ward, Gregory J. and Wilson, Helen Rose), Technical report T61.C.2.2, International Energy Agency SHC Task 61, 2021. |
| [24] | Views on ancient lighting: Modelling lighting devices and their effects in architecture (Grobe, Lars Oliver, Noback, Andreas, Bielfeldt, Ruth, Henkelmann, Vera and Lang, Franziska), 26th International Conference on Cultural Heritage and New Technologies CHNT26, 2021. |
| [23] | Nur eine Frage der Optik?: Untersuchungen von Reflexion und Transmission an der Hochschule Luzern. (Grobe, Lars Oliver), In , 2022. |
| [22] | Von der Leuchtdichtenmessung zur virtuellen Simulation: Zur Modellierung der visuellen Wahrnehmung beleuchteter Innenräume. (Grobe, Lars Oliver and Noback, Andreas), In Neues Licht aus Pompeji (Bielfeldt, Ruth, Eber, Johannes, Bosche, Susanne, Knauß, Florian, Lutz, Amelie, eds.), Nünnerich-Asmus, 2022. |
| [21] | Das „Virtuelle Triklinium": Ein interaktives Virtual-Reality-Szenario des Trikliniums EE (Bosche, Susanne, Grobe, Lars Oliver, Hunziker, Manuel, Mayer, Elisabeth, Trubina, Viktoriia, Eber, Johannes and Bielfeldt, Ruth), In Neues Licht aus Pompeji (Bielfeldt, Ruth, Eber, Johannes, Bosche, Susanne, Knauß, Florian, Lutz, Amelie, eds.), Nünnerich-Asmus, 2022. |
| [20] | Preparing the past for the future: Curating a daylight simulation model of Hagia Sophia for modern data infrastructures (Noback, Andreas and Grobe, Lars Oliver), (Börner, Wolfgang, Rohland, Hendrik, Kral-Börner, Christina, Karner, Lina, eds.), Propylaeum ebooks, Heidelberg, Germany, volume 25, 2022. |
| [19] | Daylight simulation workflows incorporating measured Bidirectional Scattering Distribution Functions (Ward, Gregory J, Bueno, Bruno, Geisler-Moroder, David, Grobe, Lars Oliver, Jonsson, Jacob C, Lee, Eleanor S, Wang, Taoning and Wilson, Helen Rose), In , volume 259, 2022. |
| [18] | Efficient simulation for visual comfort evaluations (Wasilewski, Stephen, Grobe, Lars Oliver, Wienold, Jan and Andersen, Marilyne), In , volume 267, 2022. |
| [17] | The study of daylight in the architectural and decorative framework of the Case a Giardino in Ostia (Falzone, Stella, Lang, Franziska, Ruggendorfer, Peter, Kath, Roxana, Schubert, Charlotte, Brünenberg, Clemens, Hollaender, Julian, Mächler, Claudia, Noback, Andreas, Grobe, Lars Oliver and Wasilewski, Stephen), Chapter in Pittura, luce, colore (Anna Santucci, ed.), Edizioni Quasar, volume 4, 2023. |
| [16] | Impact of model detail on daylighting metrics in residential buildings (Grobe, Lars Oliver), In Journal of Physics: Conference Series, volume 2600, 2023. |
| [15] | Modeling reflection by structured building-integrated photovoltaics (Grobe, Lars Oliver, Wasilweski, Stephen, Plörer, Daniel and Roeske, Christian), In Journal of Physics: Conference Series, volume 2600, 2023. |
| [14] | Tuning the solar performance of building facades through polymer 3D printing: Toward bespoke thermo-optical properties (Piccioni, Valeria, Leschok, Matthias, Grobe, Lars Oliver, Wasilewski, Stephen, Seshadri, Bharath, Hischier, Illias and Schlüter, Arno), In , volume 8, 2023. |
| [13] | Glare analysis of an integral daylighting and lighting control strategy for offices (Plörer, Daniel, Wasilweski, Stephen and Grobe, Lars Oliver), In Journal of Physics: Conference Series, volume 2600, 2023. |
| [12] | Sensitivity and error in the reconstruction of daylight conditions in ancient residential architecture (Brünenberg, Clemens, Grobe, Lars Oliver, Mächler, Claudia, Noback, Andreas and Wasilweski, Stephen), UHDL 2023 3rd Workshop on Research and Education in Urban History in the Age of Digital Libraries, 2023. |
| [11] | Simply daylight? Addressing the complexity of an everyday phenomenon in buildings (Grobe. Lars Oliver), Designfest 2023: Questioning Boundaries, 2023. |
| [10] | phos4dtools: Reconstructing the daylight conditions in an insula of antique Pompeii (Noback, Andreas, Monteoliva Peralta, Juan Manuel and Grobe, Lars Oliver), 21st International Radiance Workshop, 2023. |
| [9] | Climate-based daylight modeling, metrics, and level of detail (Grobe, Lars Oliver and Jakubiec, J Alstan), 21st International Radiance Workshop, 2023. |
| [8] | Pools of light: llumination by directional sunlight in Hagia Sophia (Noback, Andreas and Grobe, Lars Oliver), In International Hagia Sophia Symposium II (Kurşun, Zekeriya, Aydın, Ali \.Ihsan, eds.), Fatih Sultan Mehmet Vakıf Üniversitesi Kütüphanesi CIP, 2023. |
| [7] | Glare analysis of an integral daylighting and lighting control strategy for offices (Plörer, Daniel, Wasilweski, Stephen and Grobe, Lars Oliver), CISBAT 2023: International scientific conference on the Built Environment in Transition, 2023. |
| [6] | Impact of model detail on daylighting metrics in residential buildings (Grobe, Lars Oliver), CISBAT 2023: International scientific conference on the Built Environment in Transition, 2023. |
| [5] | Modeling reflection by structured building-integrated photovoltaics (Grobe, Lars Oliver, Plörer, Daniel, Roeske, Christian and Wasilewski, Stephen), CISBAT 2023: International scientific conference on the Built Environment in Transition, 2023. |
| [4] | Von Bronze zu Bits: Die Erforschung und innovative Vermittlung von Pompejis Lichtkunst (Hunziker, Manuel, Eber, Johannes, Grobe, Lars Oliver and Bielfeldt, Ruth), In EVA 2023: Elektronische Medien & Kunst, Kultur und Historie (Lengyel, Dominik, Bienert, Andreas, eds.), BTU Brandenburgische Technische Universität Cottbus-Senftenberg, Staatliche Museen zu Berlin - Preußischer Kulturbesitz, Deutsches Zentrum für Luft- und Raumfahrt e.V., 2023. |
| [3] | Views on ancient lighting: Modelling lighting devices and their effects in architecture (Grobe, Lars Oliver, Noback, Andreas, Bielfeldt, Ruth, Henkelmann, Vera and Lang, Franziska), Propylaeum ebooks, Heidelberg, Germany, volume 26, 2024. |
| [2] | From layer to building: Multiscale modeling of thermo-optical properties in 3D-printed facades (Piccioni, Valeria, Grobe, Lars Oliver, Hischier, Illias and Schlueter, Arno), In Energy and Buildings, volume 314, 2024. |
| [1] | Zonal reconstruction of daylighting in historic built environments: A workflow to model and evaluate light in spaces and over periods (Grobe, Lars Oliver, Noback, Andreas, Wasilewski, Stephen William, Mächler, Claudia and Lang, Franziska), Propylaeum ebooks, Heidelberg, Germany, volume 27, 2025. |