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The users' discretion is recommended. Associate Professor, Dr. C. J. Tymczak Homepage Dr. C. J. Tymczak Troop Paper money | Syllabi PHYS 238-2 | Syllabi BIOGRAPHY Dr. Tymczak has specialized in the identification, manner, and implementation of modern scientific codes for exploiting new computing process impacting substantial scale computation in miscellaneous areas in Many-body physics, Quantum Chemistry and ab initio Molecular Dynamics. He is an Associate Professor of Physics at Texas Southern University, Houston, where he is spearheading the integration of supercomputing process into many STEM programs, also as the founder and director of the Texas Southern Aerial Performance Computing Centre ( TSU-HPCC ).
At Los Alamos State Laboratory, Dr. Tymczak is a permanent scientific associate within the FreeON initiative, involving the transaction of a massively paralell linear scaling quantum chemistry methods, currently under course in collaboration with Dr. Matt Challacombe (T-12) and Dr. Anders Niklasson(T-1). He is one of the anterior to exploit wavelet based methods in goodly scale computing for empathetic the electronic constitution of materials. For the endure four oldness, he has modern the FreeON method ended the exploitation of contemporary facts structures and modern gadget architectures. FreeON is promptly recognized as one of the early quantum chemical codes with demonstrable scalable parallelism within large-scale paralell clusters.
EDUCATION APPOINTMENTS In the fashion of instituting a Assumed Quantum Chemistry Probation band based on the MondoSCF programme suite that has been under continuing system at Los Alamos Civic Laboratory. Implemented periodic boundary conditions into the Gaussian orbital linear scaling programme suite MondoSCF. Devised recent density matrix projection schemes into the Gaussian orbital linear scaling programme suite MondoSCF. Developed a bi-orthogonal wavelet reason that is optimized for electronic constitution calculation in multi-dimensions.
With this justification, bear developed succession N codes for calculating electronic constitution for condensed episode systems. Further started applying this fresh wavelet target to dead ringer and video compression. Initiated a programme to modify wavelet techniques for employ in hypothetical solid government physics. Specifically, implemented an orthogonal wavelet justification to calculate the electronic constitution for condensed business systems.
Honours FUNDING NSF-CREST, Co-PI and Project Director, Sep 2011-Present, CREST-1137732, $5,000,000/5year, “Centre for Test on Compounded Networks” NSF-MRI, Sep 2011-Present, PI, MRI-1126251, $220,000/2year, “Acquisition of HPC at Texas Southern University to Expand Capabilities for Analysis and Experience buttoned up Shared Alpine Performance Computing Texas Southern University Seed Grant Award, PI, Sep 2006, $15,000/1year, “Virgin Methods for vast Scale and Accurate Electronics Constitution Simulation” PAPERS [2] C. J. Tymczak a nd John R. Dtreak, "Interface response utility for a design of sodium: a molecular dynamics glance at", J. Chem. Phys., 92 7520 (1990). [6] B. E. Clements, H. Forbert, E. Krotscheck, H. J. Lauter, M. Saarela, and C. J. Tymczak, "Dynamics of Boson Quantum Films.", Phys. Rev. B, 50, 6958 (1994). [7] B. E. Clements, H. Godfrin, H. J. Lauter, M. Leiderer, E. Krotscheck, and C. J. Tymczak, "Assumed Dialogue of Neutron Scattering Spectra of Helium-4 Films on Graphite.", Low Temp. Phys., (lasting communications), 102, 1 (1996). [9] B. E. Clements, H. Godfrin, E. Krotscheck, H. J. Lauter, M. Leiderer, V. Passiouk, and C. J. Tymczak, "Excitations in a thin liquid Helium-4 movie from inelastic neutron scattering", Phys. Rev. B, 53, 12242 (1996). [10] B. E. Clements, E. Krotscheck, and C. J. Tymczak, "Thermal properties of Helium-4 surfaces and interfaces", Low Temp. Phys., 107, 387 (1997). [11]Krotscheck and C. J. Tymczak, "Excitations in Two-Dimensional and Three-Dimensional Quantum Fluids.", Volume. 257 of NATO Modern Peruse College, Series B: Physics, edited by A. F. G. Wyatt and H. J. Lauter (Plenum, Latest York, 1997) p. 257. [15] C. R. Handy, D. Khan, Xiao-Qian Wang, C. J. Tymczak "Multi-scale reference assistance conversation of the PT symmetry breaking solutions for the P2+iX3+iaX Hamiltonian", J. Phys. A. 34(2001) pp 5593-5602. [16] C. J. Tymczak, Anders Niklasson and Heinrich Roder, "Separable and Non-separable Multi-wavelets in Multi-dimensions", J. Comp. Phys., 175, 363-397 (2002). [17] A. M. N. Niklasson, C. J. Tymczak, and H. Roder, "A multi-resolution density matrix access to electronic constitution calculations", Phys. Rev. B., 66, p. 155120 (2002). [18] C. R. Handy, C. J. Tymczak and A. Z. Msezane, "Regge poles and residues for singular scattering potentials", Phys. Rev. A, November. 2002, 66(5), p.050701-701. [19] A. M.