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Bobrik, “Analyzing the Dynamics of Community Formation Using Brokering Activities,” in Communities and Technologies 2007, London, 2010."},"year":"2010","type":"book_chapter"},{"user_id":"15572","title":"Network coding in passive optical networks","date_created":"2017-11-27T10:22:29Z","status":"public","publication":"Network Coding (NetCod), 2010 IEEE International Symposium on","department":[{"_id":"75"}],"author":[{"full_name":"Miller, Konstantin","first_name":"Konstantin","last_name":"Miller"},{"full_name":"Biermann, Thorsten","first_name":"Thorsten","last_name":"Biermann"},{"first_name":"Hagen","full_name":"Woesner, Hagen","last_name":"Woesner"},{"full_name":"Karl, Holger","first_name":"Holger","id":"126","last_name":"Karl"}],"_id":"1004","date_updated":"2022-01-06T06:50:27Z","page":"1--6","type":"conference","citation":{"bibtex":"@inproceedings{Miller_Biermann_Woesner_Karl_2010, title={Network coding in passive optical networks}, booktitle={Network Coding (NetCod), 2010 IEEE International Symposium on}, author={Miller, Konstantin and Biermann, Thorsten and Woesner, Hagen and Karl, Holger}, year={2010}, pages={1--6} }","mla":"Miller, Konstantin, et al. “Network Coding in Passive Optical Networks.” Network Coding (NetCod), 2010 IEEE International Symposium On, 2010, pp. 1--6.","ama":"Miller K, Biermann T, Woesner H, Karl H. Network coding in passive optical networks. In: Network Coding (NetCod), 2010 IEEE International Symposium On. ; 2010:1--6.","apa":"Miller, K., Biermann, T., Woesner, H., & Karl, H. (2010). Network coding in passive optical networks. In Network Coding (NetCod), 2010 IEEE International Symposium on (pp. 1--6).","chicago":"Miller, Konstantin, Thorsten Biermann, Hagen Woesner, and Holger Karl. “Network Coding in Passive Optical Networks.” In Network Coding (NetCod), 2010 IEEE International Symposium On, 1--6, 2010.","ieee":"K. Miller, T. Biermann, H. Woesner, and H. Karl, “Network coding in passive optical networks,” in Network Coding (NetCod), 2010 IEEE International Symposium on, 2010, pp. 1--6.","short":"K. Miller, T. Biermann, H. Woesner, H. 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Discrete Mathematics, 310, 385–389.","chicago":"Steffen, Eckhard. “Tutte’s 5-Flow Conjecture for Cyclically Highly Connected Cubic Graphs.” Discrete Mathematics 310 (2010): 385–89.","bibtex":"@article{Steffen_2010, title={Tutte’s 5-flow conjecture for cyclically highly connected cubic graphs}, volume={310}, journal={Discrete Mathematics}, author={Steffen, Eckhard}, year={2010}, pages={385–389} }","mla":"Steffen, Eckhard. “Tutte’s 5-Flow Conjecture for Cyclically Highly Connected Cubic Graphs.” Discrete Mathematics, vol. 310, 2010, pp. 385–89."},"year":"2010","type":"journal_article","page":"385 - 389","language":[{"iso":"eng"}],"_id":"10174","date_updated":"2022-01-06T06:50:31Z","intvolume":" 310"},{"year":"2010","citation":{"bibtex":"@article{Mkrtchyan_Steffen_2010, title={Bricks and conjectures of Berge, Fulkerson and Seymour}, journal={arXiv:1003.5782}, author={Mkrtchyan, Vahan and Steffen, Eckhard}, year={2010} }","mla":"Mkrtchyan, Vahan, and Eckhard Steffen. “Bricks and Conjectures of Berge, Fulkerson and Seymour.” ArXiv:1003.5782, 2010.","chicago":"Mkrtchyan, Vahan, and Eckhard Steffen. “Bricks and Conjectures of Berge, Fulkerson and Seymour.” ArXiv:1003.5782, 2010.","ama":"Mkrtchyan V, Steffen E. Bricks and conjectures of Berge, Fulkerson and Seymour. arXiv:10035782. 2010.","apa":"Mkrtchyan, V., & Steffen, E. (2010). Bricks and conjectures of Berge, Fulkerson and Seymour. ArXiv:1003.5782.","ieee":"V. Mkrtchyan and E. Steffen, “Bricks and conjectures of Berge, Fulkerson and Seymour,” arXiv:1003.5782. 2010.","short":"V. Mkrtchyan, E. Steffen, ArXiv:1003.5782 (2010)."},"type":"preprint","language":[{"iso":"eng"}],"_id":"10202","date_updated":"2022-01-06T06:50:31Z","publication":"arXiv:1003.5782","author":[{"last_name":"Mkrtchyan","full_name":"Mkrtchyan, Vahan","first_name":"Vahan"},{"last_name":"Steffen","id":"15548","first_name":"Eckhard","full_name":"Steffen, Eckhard"}],"date_created":"2019-06-07T13:10:04Z","status":"public","abstract":[{"lang":"eng","text":"An $r$-graph is an $r$-regular graph where every odd set of vertices is\r\nconnected by at least $r$ edges to the rest of the graph. Seymour conjectured\r\nthat any $r$-graph is $r+1$-edge-colorable, and also that any $r$-graph\r\ncontains $2r$ perfect matchings such that each edge belongs to two of them. We\r\nshow that the minimum counter-example to either of these conjectures is a\r\nbrick. Furthermore we disprove a variant of a conjecture of Fan, Raspaud."}],"title":"Bricks and conjectures of Berge, Fulkerson and Seymour","user_id":"15540"},{"date_updated":"2022-01-06T06:50:31Z","_id":"1021","main_file_link":[{"url":"http://citeseerx.ist.psu.edu/viewdoc/citations;jsessionid=4FD9BEAF8BE1A174F36C4989EC6892B9?doi=10.1.1.415.9171"}],"type":"conference","year":"2010","citation":{"bibtex":"@inproceedings{Lischka_Karl_2010, title={RiaS: overlay topology creation on a PlanetLab infrastructure}, booktitle={Proceedings of the second ACM SIGCOMM workshop on Virtualized infrastructure systems and architectures}, author={Lischka, Jens and Karl, Holger}, year={2010}, pages={9--16} }","mla":"Lischka, Jens, and Holger Karl. “RiaS: Overlay Topology Creation on a PlanetLab Infrastructure.” Proceedings of the Second ACM SIGCOMM Workshop on Virtualized Infrastructure Systems and Architectures, 2010, pp. 9--16.","chicago":"Lischka, Jens, and Holger Karl. “RiaS: Overlay Topology Creation on a PlanetLab Infrastructure.” In Proceedings of the Second ACM SIGCOMM Workshop on Virtualized Infrastructure Systems and Architectures, 9--16, 2010.","ama":"Lischka J, Karl H. RiaS: overlay topology creation on a PlanetLab infrastructure. In: Proceedings of the Second ACM SIGCOMM Workshop on Virtualized Infrastructure Systems and Architectures. ; 2010:9--16.","apa":"Lischka, J., & Karl, H. (2010). RiaS: overlay topology creation on a PlanetLab infrastructure. In Proceedings of the second ACM SIGCOMM workshop on Virtualized infrastructure systems and architectures (pp. 9--16).","ieee":"J. Lischka and H. Karl, “RiaS: overlay topology creation on a PlanetLab infrastructure,” in Proceedings of the second ACM SIGCOMM workshop on Virtualized infrastructure systems and architectures, 2010, pp. 9--16.","short":"J. Lischka, H. Karl, in: Proceedings of the Second ACM SIGCOMM Workshop on Virtualized Infrastructure Systems and Architectures, 2010, pp. 9--16."},"page":"9--16","title":"RiaS: overlay topology creation on a PlanetLab infrastructure","user_id":"15572","author":[{"last_name":"Lischka","first_name":"Jens","full_name":"Lischka, Jens"},{"id":"126","last_name":"Karl","full_name":"Karl, Holger","first_name":"Holger"}],"department":[{"_id":"75"}],"publication":"Proceedings of the second ACM SIGCOMM workshop on Virtualized infrastructure systems and architectures","status":"public","date_created":"2017-11-27T10:22:29Z"},{"_id":"1022","date_updated":"2022-01-06T06:50:32Z","page":"513--520","type":"conference","citation":{"ieee":"D. H. Woldegebreal and H. Karl, “Energy efficiency model of network-coded cooperation in wireless sensor networks,” in Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference on, 2010, pp. 513--520.","short":"D.H. Woldegebreal, H. Karl, in: Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference On, 2010, pp. 513--520.","mla":"Woldegebreal, Dereje H., and Holger Karl. “Energy Efficiency Model of Network-Coded Cooperation in Wireless Sensor Networks.” Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference On, 2010, pp. 513--520.","bibtex":"@inproceedings{Woldegebreal_Karl_2010, title={Energy efficiency model of network-coded cooperation in wireless sensor networks}, booktitle={Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference on}, author={Woldegebreal, Dereje H and Karl, Holger}, year={2010}, pages={513--520} }","chicago":"Woldegebreal, Dereje H, and Holger Karl. “Energy Efficiency Model of Network-Coded Cooperation in Wireless Sensor Networks.” In Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference On, 513--520, 2010.","apa":"Woldegebreal, D. H., & Karl, H. (2010). Energy efficiency model of network-coded cooperation in wireless sensor networks. In Sensor Technologies and Applications (SENSORCOMM), 2010 Fourth International Conference on (pp. 513--520).","ama":"Woldegebreal DH, Karl H. Energy efficiency model of network-coded cooperation in wireless sensor networks. 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Cooperative communication to improve reliability and efficient neighborhood wakeup in wireless sensor networks. In: Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010). ; 2010.","apa":"Khan, R. A. M., & Karl, H. (2010). Cooperative communication to improve reliability and efficient neighborhood wakeup in wireless sensor networks. In Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010).","bibtex":"@inproceedings{Khan_Karl_2010, title={Cooperative communication to improve reliability and efficient neighborhood wakeup in wireless sensor networks}, booktitle={Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010)}, author={Khan, Rana Azeem M and Karl, Holger}, year={2010} }","mla":"Khan, Rana Azeem M., and Holger Karl. “Cooperative Communication to Improve Reliability and Efficient Neighborhood Wakeup in Wireless Sensor Networks.” Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010), 2010.","short":"R.A.M. Khan, H. Karl, in: Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010), 2010.","ieee":"R. A. M. Khan and H. Karl, “Cooperative communication to improve reliability and efficient neighborhood wakeup in wireless sensor networks,” in Proceedings of the Fourth International Conference on Mobile Ubiquitous Computing (UBICOMM 2010), 2010."},"date_updated":"2022-01-06T06:50:32Z","_id":"1023"},{"language":[{"iso":"eng"}],"doi":"10.1002/pssc.200982473","date_updated":"2022-01-06T06:51:39Z","publication_status":"published","publication_identifier":{"eissn":["1610-1642"],"issn":["1862-6351"]},"project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"department":[{"_id":"295"},{"_id":"296"}],"isi":"1","title":"Do we know the band gap of lithium niobate?","external_id":{"isi":["000284313000057"]},"citation":{"bibtex":"@article{Thierfelder_Sanna_Schindlmayr_Schmidt_2010, title={Do we know the band gap of lithium niobate?}, volume={7}, DOI={10.1002/pssc.200982473}, number={2}, journal={Physica Status Solidi C}, publisher={Wiley-VCH}, author={Thierfelder, Christian and Sanna, Simone and Schindlmayr, Arno and Schmidt, Wolf Gero}, year={2010}, pages={362–365} }","mla":"Thierfelder, Christian, et al. “Do We Know the Band Gap of Lithium Niobate?” Physica Status Solidi C, vol. 7, no. 2, Wiley-VCH, 2010, pp. 362–65, doi:10.1002/pssc.200982473.","chicago":"Thierfelder, Christian, Simone Sanna, Arno Schindlmayr, and Wolf Gero Schmidt. “Do We Know the Band Gap of Lithium Niobate?” Physica Status Solidi C 7, no. 2 (2010): 362–65. https://doi.org/10.1002/pssc.200982473.","apa":"Thierfelder, C., Sanna, S., Schindlmayr, A., & Schmidt, W. G. (2010). Do we know the band gap of lithium niobate? Physica Status Solidi C, 7(2), 362–365. https://doi.org/10.1002/pssc.200982473","ama":"Thierfelder C, Sanna S, Schindlmayr A, Schmidt WG. Do we know the band gap of lithium niobate? Physica Status Solidi C. 2010;7(2):362-365. doi:10.1002/pssc.200982473","ieee":"C. Thierfelder, S. Sanna, A. Schindlmayr, and W. G. Schmidt, “Do we know the band gap of lithium niobate?,” Physica Status Solidi C, vol. 7, no. 2, pp. 362–365, 2010.","short":"C. Thierfelder, S. Sanna, A. Schindlmayr, W.G. Schmidt, Physica Status Solidi C 7 (2010) 362–365."},"year":"2010","type":"journal_article","page":"362-365","issue":"2","intvolume":" 7","_id":"13573","conference":{"end_date":"2009-07-10","location":"Weimar","name":"12th International Conference on the Formation of Semiconductor Interfaces","start_date":"2009-07-05"},"volume":7,"has_accepted_license":"1","status":"public","date_created":"2019-10-01T09:18:29Z","author":[{"last_name":"Thierfelder","full_name":"Thierfelder, Christian","first_name":"Christian"},{"full_name":"Sanna, Simone","first_name":"Simone","last_name":"Sanna"},{"full_name":"Schindlmayr, Arno","orcid":"0000-0002-4855-071X","first_name":"Arno","id":"458","last_name":"Schindlmayr"},{"last_name":"Schmidt","id":"468","first_name":"Wolf Gero","orcid":"0000-0002-2717-5076","full_name":"Schmidt, Wolf Gero"}],"publisher":"Wiley-VCH","quality_controlled":"1","file_date_updated":"2020-08-30T15:07:56Z","publication":"Physica Status Solidi C","file":[{"date_created":"2020-08-28T14:39:40Z","file_name":"pssc.200982473.pdf","access_level":"closed","creator":"schindlm","file_id":"18583","title":"Do we know the band gap of lithium niobate?","file_size":212674,"description":"© 2010 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim","relation":"main_file","content_type":"application/pdf","date_updated":"2020-08-30T15:07:56Z"}],"ddc":["530"],"user_id":"458","article_type":"original","abstract":[{"text":"Given the vast range of lithium niobate (LiNbO3) applications, the knowledge about its electronic and optical properties is surprisingly limited. The direct band gap of 3.7 eV for the ferroelectric phase – frequently cited in the literature – is concluded from optical experiments. Recent theoretical investigations show that the electronic band‐structure and optical properties are very sensitive to quasiparticle and electron‐hole attraction effects, which were included using the GW approximation for the electron self‐energy and the Bethe‐Salpeter equation respectively, both based on a model screening function. The calculated fundamental gap was found to be at least 1 eV larger than the experimental value. To resolve this discrepancy we performed first‐principles GW calculations for lithium niobate using the full‐potential linearized augmented plane‐wave (FLAPW) method. Thereby we use the parameter‐free random phase approximation for a realistic description of the nonlocal and energydependent screening. This leads to a band gap of about 4.7 (4.2) eV for ferro(para)‐electric lithium niobate.","lang":"eng"}]},{"title":"Ab initiog-tensor calculation for paramagnetic surface states: hydrogen adsorption at Si surfaces","department":[{"_id":"15"},{"_id":"170"},{"_id":"295"}],"publication_identifier":{"issn":["1862-6351","1610-1642"]},"publication_status":"published","project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"date_updated":"2022-01-06T06:51:39Z","doi":"10.1002/pssc.200982462","language":[{"iso":"eng"}],"user_id":"16199","author":[{"last_name":"Gerstmann","id":"171","first_name":"Uwe","full_name":"Gerstmann, Uwe"},{"last_name":"Rohrmüller","first_name":"M.","full_name":"Rohrmüller, M."},{"first_name":"F.","full_name":"Mauri, F.","last_name":"Mauri"},{"first_name":"Wolf Gero","orcid":"0000-0002-2717-5076","full_name":"Schmidt, Wolf Gero","last_name":"Schmidt","id":"468"}],"publication":"physica status solidi (c)","volume":7,"status":"public","date_created":"2019-10-01T09:20:03Z","_id":"13574","intvolume":" 7","issue":"2","type":"journal_article","citation":{"ieee":"U. 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Wippermann et al., “Optical anisotropy of Si(111)-(4 × 1)/(8 × 2)-In nanowires calculated fromfirst-principles,” physica status solidi (c), vol. 7, no. 2, pp. 133–136, 2010.","chicago":"Wippermann, S., Wolf Gero Schmidt, F. Bechstedt, S. Chandola, K. Hinrichs, M. Gensch, N. Esser, K. Fleischer, and J. F. McGilp. “Optical Anisotropy of Si(111)-(4 × 1)/(8 × 2)-In Nanowires Calculated Fromfirst-Principles.” Physica Status Solidi (C) 7, no. 2 (2010): 133–36. https://doi.org/10.1002/pssc.200982413.","ama":"Wippermann S, Schmidt WG, Bechstedt F, et al. Optical anisotropy of Si(111)-(4 × 1)/(8 × 2)-In nanowires calculated fromfirst-principles. physica status solidi (c). 2010;7(2):133-136. doi:10.1002/pssc.200982413","apa":"Wippermann, S., Schmidt, W. G., Bechstedt, F., Chandola, S., Hinrichs, K., Gensch, M., … McGilp, J. F. (2010). Optical anisotropy of Si(111)-(4 × 1)/(8 × 2)-In nanowires calculated fromfirst-principles. 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