Prof. Dr. Thorsten Pöschel
Head of the institute
09131 85 70501
03.153
Head of the institute
09131 85 70501
03.153
(submitted)
Granular Matter
(submitted)
Granular Matter
(submitted)
(submitted)
Journal of Fluid Mechanics
(submitted)
Elsevier 406, 115907
(2023)
Granular Matter 25, 16
(2023)
Physics of Fluids
(2022)
New Journal of Physics, 24
(2022)
Physical Review E 105, L022902
(2022)
Journal of Fluid Mechanics, 935
(2022)
Granular Matter 24, 31
(2022)
Physical Review Letters 127, 110601
(2021)
Journal of Fluid Mechanics 917
(2021)
Physical Review E 104, 034125
(2021)
Nature Physics 17, 773-774
(2021)
Computational Particle Mechanics
(2021)
Additive Manufacturing 48, 102248
(2021)
Physics of Fluids 33, 042010
(2021)
Communications Physics 4, 71
(2021)
Science Advances 7, 16, eabf8998
(2021)
Journal of Pharmacy and Pharmacology, 73, 212-220
(2021)
Physics of Fluids 33, 081701
(2021)
Proceedings of the National Academy of Sciences (PNAS), 2020, 117, 3382-3387
(2020)
Powder Technology 377, 813-826
(2020)
New Journal of Physics 22 113018
(2020)
International Journal of Molecular Sciences 21, 5501
(2020)
Physical Review Letters 125, 048001
(2020)
Powder Technology 373, 357-361
(2020)
Physical Review E 102, 012903
(2020)
Additive Manufacturing 36, 101421
(2020)
Physical Review E 102, 012139
(2020)
Computer Physics Communications 254,107229
(2020)
Granular Matter 22, 67
(2020)
Granular Matter 22, 27
(2020)
Granular Matter 22, 54
(2020)
American Journal of Physics 88, 175
(2020)
Advanced Powder Technology 31, 2293-2304
(2020)
Colloids and Surfaces B: Biointerfaces 184, 110539
(2019)
Physical Review E 100, 022902
(2019)
JGR Solid Earth 124, 8077-8100
(2019)
Communications Physics 2, 85
(2019)
Springer Verlag, ISBN 978-3-030-05734-3
(2019)
Review of Scientific Instruments 90, 105103
(2019)
American Journal of Physics 87, 255-263
(2019)
Revview of Scientific Instruments 90, 025108
(2019)
Applied Thermal Engineering 146, 39-44
(2019)
Particles in Contact pp 565-590
(2019)
Chemical Engineering Journal, 377, 119820
(2019)
Particles in Contact pp 517-563
(2019)
Powder Technology 356, 439-442
(2019)
Proceedings of the 13th International SPHERIC Workshop, 364-370, Galway, Ireland, 26–28 June 2018 National University of Ireland Galway
(2018)
International Journal of Heat and Mass Transfer 131, 1232-1246
(2018)
Computers & Mathematics with Applications, 76, 1447-1457
(2018)
Physical Review Letters 120, 148002
(2018)
Review of Scientific Instruments 89, 075103
(2018)
Nature Communications 9, 931
(2018)
Nature Communications 9, 797
(2018)
Physics of Fluids 30, 013603
(2018)
Biosensors and Bioelectronics 102, 589-599
(2018)
Physical Review E 98, 022902
(2018)
Chemical Engineering Science 176, 192-204
(2018)
Proceedings of the 12th International SPHERIC Workshop, Ourense, 13-15 June 2017, Universidad de Vigo, Spain
(2017)
EPJ Web of Conferences 140, 09005
(2017)
EPJ Web of Conferences 140, 14010
(2017)
V International Conference on Particle-based Methods – Fundamentals and Applications. PARTICLES 2017 (P. Wriggers, M. Bischoff, E. Oñate, D.R.J. Owen, T. Zohdi). 429-439. Hannover.
(2017)
Scientific Reports 7, 12723
(2017)
Physical Review E 96, 040901(R)
(2017)
American Journal of Physics 85, 649
(2017)
RSC Advances 7, 42218-42224
(2017)
Revista Cubana de Física 34, 69
(2017)
Physical Review Fluids 2, 124204
(2017)
Soft Matter 13, 8816-8823
(2017)
Physical Review Letters 118, 218001
(2017)
EG 2017 - Posters (P. Benard, D. Sykora). The Eurographics Association.
(2017)
EPJ Web of Conferences 140, 15013
(2017)
EPJ Web of Conferences 140, 16001
(2017)
Physics of Fluids 29, 083303
(2017)
Physical Review Letters 118, 198003
(2017)
EPJ Web of Conferences 140, 03069
(2017)
EPJ Web of Conferences 140, 16008
(2017)
New Journal of Physics 19, 013001
(2017)
American Journal of Physics 85, 98
(2017)
New Journal of Physics 18, 073049
(2016)
New Journal of Physics 18, 113006
(2016)
6th International Conference on Additive Technologies. iCAT 2016 (I. Drstvenšek, D. Drummer, M. Schmidt). Interesansa - zavod. Ljubljana.
(2016)
New Journal of Physics 18, 123001
(2016)
Computational Particle Mechanics 3, 389
(2016)
Scientific Reports 6, 26833
(2016)
Journal of Computational Physics 311, 158-172
(2016)
European Journal of Physics 37, 055305
(2016)
Physics of Fluids 28, 073301
(2016)
Computational Particle Mechanics 3, 383-388
(2016)
Granular Matter 18, 31
(2016)
New Journal of Physics 18, 118004
(2016)
Revista Cubana de Física 33, 37-38
(2016)
Soft Matter 12, 3184-3188
(2016)
Powder Technology 288, 96-102
(2016)
Journal of Computational Physics 308, 421-437
(2016)
Physical Review E 93, 032901
(2016)
Scientific Reports 6, 22520
(2016)
Scientific Reports 5, 12703
(2015)
Scientific Reports 5, 16572
(2015)
Powder Technology 279, 113-122
(2015)
Procedia Engineering 102, 850-857
(2015)
Soft Matter 11, 4295-4305
(2015)
New Journal of Physics 17, 013036
(2015)
Journal of Fluid Mechanics 781, 595-621
(2015)
Physical Review E 91, 062213
(2015)
Physical Review Applied 3, 024007
(2015)
Physical Review E 91, 062214
(2015)
Granular Matter 17, 73-82
(2015)
New Journal of Physics 17, 013024
(2014)
Journal of Fluid Mechanics 751, 601-626
(2014)
Physical Review E 90, 052204
(2014)
Chemie Ingenieur Technik 86, 365-374
(2014)
Physical Review E 89, 022205
(2014)
Computational Particle Mechanics 1, 191-198
(2014)
Jam-Packed 2014, Erlangen, Germany, 15th – 18th
(2014)
Jam-Packed – Jamming and Packing of particulate systems, Erlangen, Germany, 15th – 18th September
(2014)
Packing and Jamming of Particulate Systems – Jam Packed 2014, September 15-18, Erlangen
(2014)
85th Annual Meeting of the International Association of Applied Mathematics and Mechanics – GAMM 2014, March 10-14
(2014)
Scientific Reports 4, 6227
(2014)
Aeolian Research 12, 121-133
(2014)
EPJ Special Topics 223, 2857-2867
(2014)
EPJ Special Topics 223, 2269-2283
(2014)
Physical Review Letters 110, 254301
(2013)
Physical Review Letters 111, 018001
(2013)
Physics Letters A 377, 2052–2057
(2013)
Journal of Physical Chemistry B 117, 1166−1175
(2013)
New Journal of Physics 15, 093023
(2013)
Granular Matter 15, 377–387
(2013)
AIP Conference Proceedings 1542, 811-814
(2013)
Physical Review E 87, 033301
(2013)
Physical Review E 87, 039904(E)
(2013)
New Journal of Physics 15, 093030
(2013)
AIP Conference Proceedings 1542, 149-152
(2013)
Granular Matter 15, 389-390
(2013)
Philosophical Magazine 93, 4090-4107
(2013)
EAM Summerschool, Kloster Banz, Germany
(2013)
New Journal of Physics 15, 043044
(2013)
Scientific Reports 3, 2858
(2013)
Physical Review E 87, 042907
(2013)
Selected Topics in Nonlinear Dynamics and Theoretical Electrical Engineering (Kyamakya K., Halang W., Mathis W., Chedjou J., Li Z.; Eds.) SCI 459. 161-177. Springer. Berlin, Heidelberg.
(2013)
The European Physical Journal D 67, 149
(2013)
Scientific Reports 3, 1958
(2013)
Scientific Reports 3, 3350
(2013)
Presented at Powders and Grains 2013, Sydney, Australia, 08th – 12th
(2013)
Physical Review Letters 111, 168003
(2013)
AIP Conference Proceedings 1501, 993-1000
(2012)
Granular Matter 14, 77
(2012)
Physical Review E 85, 031307
(2012)
Physical Review E 86, 061310
(2012)
Physica A 391, 4442-4447
(2012)
Granular Matter 14, 115-120
(2012)
Physical Review E 85, 041306
(2012)
Proceedings XXIII ICTAM, 19th – 24th August 2012, Beijing, China
(2012)
Physical Review Letters 109, 128001
(2012)
EAM Summerschool, Kloster Banz, Germany
(2012)
Europhysics Letters 100, 48002
(2012)
(2012)
Physical Review E 84, 021302
(2011)
Physical Review E 84, 041306
(2011)
Physical Review E 83, 041304
(2011)
Physical Review E 84, 011301
(2011)
Chemical Physics 375, 600-605
(2010)
Journal of Fluid Mechanics 655, 1–2
(2010)
New Trends in Artificial Intelligence. 14th Portuguese Conference on Artificial Intelligence. EPIA 2009. Aveiro, October 12-15, 2009. Proceedings (Luís Seabra Lopes, Nuno Lau, Pedro Mariano, Luís M. Rocha), 101-112
(2009)
EPJ Special Topics 179, 91-111
(2009)
EPJ Special Topics 179
(2009)
AIP Conference Proceedings 1145, 859-862
(2009)
Journal of Fluid Mechanics 597, 119-144
(2008)
The European Physical Journal E, 27, 107-114
(2008)
Physical Review E, 77, 011304
(2008)
Granular Matter 10, 231-232
(2008)
Physical Review E, 78, 051304
(2008)
Physical Review Letters 100, 218002
(2008)
Nucleic Acids Research 36, W47–W54
(2008)
European Journal of Environmental and Civil Engineering 12, 827-870
(2008)
International Journal of Modern Physics C 18, 701-711
(2007)
Physical Review Letters 98, 128001
(2007)
(Andreas Schadschneider, Thorsten Pöschel, Reinhard Kühne, Michael Schreckenberg, Dietrich E. Wolf), Springer
(2007)
Granular Matter 10, 21-27
(2007)
Granular Matter 9, 465-469
(2007)
Physical Review E 76, 051302
(2007)
Europhysics Letters 75, 188
(2006)
Modelling and numerics of kinetic dissipative systems (Pareschi, L. and Russo, G. and Toscani, G.), Nova Science, Hauppauge NY
(2006)
The most striking phenomenon in the dynamics of granular gases is the formation of clusters and other structures. We investigate a gas of dissipatively colliding particles with a velocity dependent coefficient of restitution where cluster formation occurs as a transient phenomenon. Although for small impact velocity the particles collide elastically, surprisingly the temperature converges to zero.
Irreversible Prozesse und Selbstorganisation (Pöschel, T.; Malchow, H.; and Schimansky-Geier, L.), 281 - 292. Berlin: Logos.
(2006)
Behavior of Granular Media (Walzel, P.; Grochowski, R.; Kruelle, C.; and Linz, S. J.), 151 - 159. Aachen: Shaker.
(2006)
Physical Review E 74, 041302
(2006)
Logos, Berlin
(2006)
Europhysics Letters 74, 424-430
(2006)
Powders & Grains 2005: Proceedings of the 5th International Conference on Micromechanics of Granular Media (Garcia-Rojo, R., Herrmann, H. J., McNamara, S.), 1247-1253. Taylor & Francis.
(2005)
Powders & Grains 2005: Proceedings of the 5th International Conference on Micromechanics of Granular Media (Garcia-Rojo, R., Herrmann, H. J., McNamara, S.) 2, 505-509. Taylor & Francis.
(2005)
Springer, Berlin, Heidelberg, New York
(2005)
Chaos 15, 026108
(2005)
Europhysics Letters 69, 725-731
(2005)
Europhysics Letters 69, 371-377
(2005)
Journal of Physics: Condensed Matter 17, S2705–S2713
(2005)
Biophysical Journal 87, 729
(2004)
Physical Review E 69, 059905
(2004)
The Physics of Granular Media (Hinrichsen, H. and Wolf, D. E.), 189-209. Amsterdam: Wiley.
(2004)
Physical Review Letters 93, 134301
(2004)
Oxford University Press, Oxford
(2004)
Physical Review E 69, 021302
(2004)
Proceed. 7th APCTP Winter School on Granular Material and Complex Systems (Lee, J.). Phoenix Park, Kangwondo, Korea: Asia Pacific Center for Theoretical Physics.
(2003)
Granular Gas Dynamics (Lecture Notes in Physics) (Pöschel, T. and Brilliantov, N. V) 624, 131-162. Berlin: Springer.
(2003)
Biosystems 69, 63-72
(2003)
Physical Review E 67, 061304
(2003)
Physical Review Letters 91, 024301
(2003)
Biophysical Journal 85, 3460-3474
(2003)
European Physical Journal E 12, 531-541
(2003)
BMC Bioinformatics 4, 58-64
(2003)
International Journal of Modern Physics C 13, 1263-1272
(2002)
Perspektiven der Forschung und ihrer Förderung, 417-427. Weinheim: Wiley-VCH.
(2002)
Physical Review E 66, 026103
(2002)
SPIE, 3045
(2002)
The properties of dense granular systems are analyzed from a hydrodynamical point of view, based on conservation laws for the particle number density and linear momentum. We discuss averaging problems associated with the nature of such systems and the peculiarities of the sources of noise. We perform a quantitative study by combining analytical methods and numerical results obtained by ensemble-averaging of data on creep during compaction and molecular dynamics simulations of convective flow. We show that numerical integration of the hydrodynamic equations gives the expected evolution for the time-dependent fields.
Philosophical Transactions of the Royal Society A 360, 415-428
(2002)
System Dynamics and Long-Term Behaviour of Railway Vehicles, Track and Subgrade (Popp, K., and Schiehlen, W.), 451-470. Berlin: Springer.
(2002)
Physica A 325, 274-283
(2002)
Granular Gases (Pöschel, T. and Luding, S) 564, 203-212. Berlin: Springer.
(2001)
Physical Review E 64, 011308
(2001)
Physical Review Letters 63, 021505
(2001)
Powders and Grains 2001: Proceedings of the Fourth International Conference on Micromechanics of Granular Media, Sendai, 21-25 May 2001 (Kishino, Y.), 439-442. Rotterdam: Balkema.
(2001)
Granular Gases (Pöschel, T. and Luding, S) 564, 100-124. Berlin: Springer.
(2001)
European Physical Journal E 4, 233-239
(2001)
Coherent Structures in Complex Systems - Selected Papers of the XVII Sitges Conference on Statistical Mechanics Held at Sitges, Barcelona, Spain, 5-9 June 2000 (D. Reguera, L.L. Bonilla, and M. Rubi) 567, 408-419. Berlin: Springer.
(2001)
Logos, Berlin
(2001)
Mechanics for a New Millennium - Proceedings of the 20th International Congress on Theoretical and Applied Mechanics, held in Chicago, USA, 27 August - 2 September 2000 (Aref, H. and Philips, J.W.). Dortrecht: Kluwer.
(2000)
Zahnärzteblatt der Landeszahnärztekammer Thüringen
(2000)
European Physical Journal B 16, 169–182
(2000)
European Physical Journal E 1, 55-59
(2000)
Physical Review E 61, 2809 – 2812
(2000)
Schüttgut 6, 11-24
(2000)
Lecture Notes in Physics, 564, Springer, Berlin, Heidelberg, New York
(2000)
Physical Review E 61, 1716-1721
(2000)
Physical Review E 61, 5573-5587
(2000)
Mechanics for a New Millennium - Proceedings of the 20th International Congress on Theoretical and Applied Mechanics, held in Chicago, USA, 27 August - 2 September 2000 (Aref, H.; Philips, J.W.). Dortrecht: Kluwer.
(2000)
Stochastic Processes in Physics, Chemistry, and Biology (Freund, J. A. and Pöschel, T.) 557, 107-117. Berlin: Springer.
(2000)
Physical Review E 62, 1361-1367
(2000)
Lecture Notes in Physics, 557, Springer, Berlin, Heidelberg, New York
(2000)
Physikalische Blätter 55, 99
(1999)
European Physical Journal B 10, 169-174
(1999)
European Physical Journal B 12, 299-301
(1999)
Physical Review E 59, 4422-4425
(1999)
Physical Review E 60, 4465-4472
(1999)
habilitation thesis, Humboldt-University Berlin
(1999)
A Perspective Look at Nonlinear Media. Lecture Notes in Physics (Parisi J., Müller S.C., Zimmermann W.) 503, 96-109. Berlin: Springer.
(1998)
Physical Review E 57, 650-654
(1998)
Physical Review Letters 80, 5708
(1998)
Europhysics Letters 42, 511-516
(1998)
Granular Matter 1, 33-41
(1998)
Physical Review E, 57, 650-654
(1998)
We investigate the cooling rate of a gas of inelastically interacting particles. When we assume velocity-dependent coefficients of restitution the material cools down slower than with constant restitution. This behavior might have a large influence to clustering and structure formation processes.
Physics of Dry Granular Media: Proceedings of the NATO Advanced Study Institute, Cargese, France, September 15-26, 1997 (H. J. Herrmann and J.-P. Hovi and S. Luding) 350, 625-631. Dortrecht: Kluwer.
(1998)
Proceedings 3327, Smart Structures and Materials 1998: Passive Damping and Isolation, 19-26
(1998)
Journal of Statistical Physics 86, 1385-1395
(1997)
Lecture Notes in Physics, 484, Springer, Berlin, Heidelberg, New York
(1997)
Journal of Statistical Physics 86, 421-430
(1997)
Biological Complexity (Mizraji, E., Acerenza, L., Alvarez, F., and Pomi, A.), 113-142. Montevideo, Uruguay: D.I.R.A.C.
(1997)
International Journal of Bifurcation and Chaos 7, 751-757
(1997)
Stochastic Dynamics (Schimansky-Geier, L. and Pöschel, T.) 484, 220-231. Berlin: Springer.
(1997)
Proceedings 3045, Smart Structures and Materials 1997: Passive Damping and Isolation, 341-344
(1997)
Friction, Arching and Contact Dynamics (Wolf, D. E. and Grassberger, P.), 293-299, World Scientific, Singapore
(1997)
In a recent paper an implicit equation for contacting viscoelastic spheres was derived [1]. Integrating this equation it can be shown that the coefficient of normal restitution ε depends on the impact velocity g as 1- ε ∼ g^⅕
Friction, Arching, Contact Dynamics: Proceedings of the Workshop, HLRZ, Forschungszentrum Jülich, Germany, 28-30 October 1996 (Wolf, D. E. and Grassberger, P.), 265-273. Singapore: World Scientific.
(1997)
Dynamik, Evolution, Strukturen: Nichtlineare Dynamik und Statistik komplexer Strukturen (Freund, J.), 191-201. Berlin: Köster.
(1996)
Dynamik, Evolution, Strukturen: Nichtlineare Dynamik und Statistik komplexer Strukturen (Freund, J.), 237-246. Berlin: Köster.
(1996)
Journal of Statistical Physics 82, 443-450
(1996)
Physical Review E 53, 5382-5392
(1996)
Biosystems 39, 117-125
(1996)
Physica A 231, 417-424
(1996)
Physical Review E 54, R4560(R)
(1996)
Journal of Statistical Physics 84, 1373-1378
(1996)
Proceedings of PhysComp96: Fourth Workshop on Physics and Computation, Boston, 22-24 November 1996 (Toffoli, T., Biafore, M. and Leão, J.), 103-107. Complex Systems Institute. Boston.
(1996)
Dynamik, Evolution, Strukturen: Nichtlineare Dynamik und Statistik komplexer Strukturen (Freund, J.) 237-246, Köster, Berlin
(1996)
Das dissipative Verhalten granularer Gase ist wegen seiner ungewöhnlichen Eigenschaften von großem wissenschaftlichen Interesse. Goldhirsch and Zanetti [1] und McNamara und Young [2] zeigten, dass ein homogen initialisiertes granulares Gas im Laufe der Zeit instabil ist – nach einiger Zeit der Abkühlung durch dissipative Stöße bilden sich räumliche Dichteinhomogenitäten und schließlich Cluster.
Dynamik, Evolution, Strukturen: Nichtlineare Dynamik und Statistik komplexer Strukturen (Freund, J.) ,191-201, Köster, Berlin
(1996)
Zeitschrift für Physikalische Chemie 188, 311
(1995)
Chaos, Solitons & Fractals 5, 1901-1905, 1907-1912
(1995)
Physica A 219, 95-113
(1995)
Journal of Statistical Physics 80, 1443-1452
(1995)
Europhysics Letters 29, 123-129
(1995)
Physica A 216, 199-212
(1995)
International Journal of Bifurcation and Chaos 5, 51-61
(1995)
Journal de Physique I France 5, 1431-1455
(1995)
Guanajuato Lectures, México, 16-22 Januar 1995 (López-Peña, R. and Waelbroeck, H. and Zertuche, F.).
(1995)
Coherent Approaches to Fluctuations (Proc. Hayashibara Forum 95), 59-64. Singapore: World Scientific.
(1995)
Physica A 202, 390-401
(1994)
Europhysics Letters 26, 241-246
(1994)
Physica A, 202, 390-401
(1994)
The evolution of a pile of granular material is investigated by molecular dynamics using a new model including nonsphericity of the particles instead of introducing static friction terms. The angle of repose of the piles as well as the avalanche statistics gathered by the simulation agree with experimental results. The angle of repose of the pile is determined by the shape of the grains. Our results are compared with simulations using spherical grains and static friction.
Bulletin of the American Astronomical Society 26, 1143-1144
(1994)
Europhysics Letters, 26, 241-246
(1994)
We investigated long range correlations in two literary texts, Moby Dick by H. Melville and Grimm’s tales. The analysis is based on the calculation of entropy like quantities as the mutual information for pairs of letters and the entropy, the mean uncertainty, per letter. We further estimate the number of different subwords of a given length n. Filtering out the contributions due to the effects of the finite length of the texts, we find correlations ranging to a few hundred letters. Scaling laws for the mutual information (decay with a power law), for the entropy per letter (decay with the inverse square root of n) and for the word numbers (stretched exponential growth with n and with a power law of the text length) were found.
Chaos, Solitons & Fractals 4, 1883-1888
(1994)
Physical Review E 50, 2654-2659
(1994)
Journal de Physique I France 4, 499-506
(1994)
Proc. 3. Int. Conf. on Bioinformatics and Genome Research (Lim, H. A. and Cantor, C. A.), 445, World Scientific, Singapore
(1994)
A representation of the genetic code as a six-dimensional Boolean hypercube is proposed. It is assumed here that this structure is the result of the hierarchical order of the interaction energies of the bases in codon-anticodon recognition. The proposed structure demonstrates that in the genetic code there is a balance between conservatism and innovation. Comparing aligned positions in homologous protein sequences two different behaviors are found: a) There are sites in which the different amino acids present may be explained by one or two „attractor nodes“ (coding for the dominating amino acid(s)) and their one-bit neighbors in the codon hypercube, and b) There are sites in which the amino acids present correspond to codons located in closed paths in the hypercube. The structure of the code facilitates evolution: the variation found at the variable positions of proteins do not corresponds to random jumps at the codon level, but to well defined regions of the hypercube.
KFA intern 24, 3-4
(1993)
Journal de Physique II France 3, 27-40
(1993)
International Journal of Modern Physics C 4, 1049-1057
(1993)
Physical Review Letters 71, 3963-3966
(1993)
Physica A 198, 441-448
(1993)
KFA-Intern, 24, 3-4
(1993)
Im Höchstleistungsrechenzentrum wurde der Fluß von granularen Medien durch Rohre auf dem Computer simuliert. Dabei wurde die Ausbildung von unregelmäßigen Dichtewellen entdeckt und in einem Videofilm sichtbar dargestellt. Experimente bestätigen diese Simulationsrechnungen. In der industriellen Anwendung stellen solche Stoßwellen, z.B. beim Ausfluß von Silos, schon lange ein großes Problem dar.
Neurocomputers and Attention II: Connectionism and neurocomputers (Holden, A. V. and Kryukov, V. I.), 615-627. Manchester: Manchester University Press.
(1991)
Nachrichten Neuronale Netze der Fachgruppe 0.1.3., 3
(1991)
Humboldt University, Berlin
(1990)
Manuskripte der Humboldt-Universität 1, 46-57
(1989)
Dynamical Networks (Ebeling, W. and Peschel, M.), 128-137. Berlin: Akademie-Verlag.
(1989)
Manuskripte der Humboldt-Universität, 2, 35-49
(1989)
Patent DD 270 161 A1
(1988)
DD 270 162 A1
(1988)
Parcella'88 (Wolf, G. and Legendy, T. and Schendel, U.). Berlin: Akademie-Verlag.
(1988)
Innovative Informations-Infrastrukturen, I.I.I.-Forum (Gollan, B. and Paul, W. J. and Schmitt, A.), 187-197. Saarbrücken.
(1988)