| 2012 | ||
|---|---|---|
| j18 | Ofer M. Shir, Jonathan Roslund, Zaki Leghtas, Herschel Rabitz: Quantum control experiments as a testbed for evolutionary multi-objective algorithms. Genetic Programming and Evolvable Machines 13(4): 445-491 (2012) | |
| j17 | Zaki Leghtas, Gabriel Turinici, Herschel Rabitz, Pierre Rouchon: Hamiltonian Identification Through Enhanced Observability Utilizing Quantum Control. IEEE Trans. Automat. Contr. 57(10): 2679-2683 (2012) | |
| c8 | Philippe Laurent, Herschel Rabitz, Julien Salomon, Gabriel Turinici: Control through operators for quantum chemistry. CDC 2012: 1663-1667 | |
| c7 | Daoyi Dong, Ian R. Petersen, Herschel Rabitz: Sampled-data design for robust decoherence control of a single qubit. CDC 2012: 1668-1673 | |
| i4 | Daoyi Dong, Ian R. Petersen, Herschel Rabitz: Sampled-data design for robust control of a single qubit. CoRR abs/1206.3897 (2012) | |
| 2011 | ||
| j16 | Tak-San Ho, Herschel Rabitz, Shih-I Chu: A general formulation of monotonically convergent algorithms in the control of quantum dynamics beyond the linear dipole interaction. Computer Physics Communications 182(1): 14-17 (2011) | |
| i3 | Jason Dominy, Herschel Rabitz: Dynamic Homotopy and Landscape Dynamical Set Topology in Quantum Control. CoRR abs/1102.4360 (2011) | |
| i2 | Ofer M. Shir, Jonathan Roslund, Darrell Whitley, Herschel Rabitz: Evolutionary Hessian Learning: Forced Optimal Covariance Adaptive Learning (FOCAL). CoRR abs/1112.4454 (2011) | |
| i1 | Ofer M. Shir, Jonathan Roslund, Zaki Leghtas, Herschel Rabitz: Quantum Control Experiments as a Testbed for Evolutionary Multi-Objective Algorithms. CoRR abs/1112.5424 (2011) | |
| 2010 | ||
| j15 | Traci Strohecker, Herschel Rabitz: Quantum control implemented as combinatorial optimization. Journal of Computational Chemistry 31(1): 151-153 (2010) | |
| j14 | Peter A. DiMaggio Jr., Scott R. McAllister, Christodoulos A. Floudas, Xiao-Jiang Feng, Joshua D. Rabinowitz, Herschel Rabitz: A network flow model for biclustering via optimal re-ordering of data matrices. J. Global Optimization 47(3): 343-354 (2010) | |
| c6 | Ofer M. Shir, Jonathan Roslund, Herschel Rabitz: Forced optimal covariance adaptive learning: modified CMA-ES for efficient hessian determination. GECCO 2010: 421-422 | |
| 2009 | ||
| c5 | Herschel Rabitz, Constantin Brif, Rebing Wu: Controlling quantum systems in the presence of an environment. CDC 2009: 380-385 | |
| c4 | Ofer M. Shir, Jonathan Roslund, Herschel Rabitz: Evolutionary multi-objective quantum control experiments with the covariance matrix adaptation. GECCO 2009: 659-666 | |
| 2008 | ||
| j13 | Peter A. DiMaggio Jr., Scott R. McAllister, Christodoulos A. Floudas, Xiao-Jiang Feng, Joshua D. Rabinowitz, Herschel Rabitz: Biclustering via optimal re-ordering of data matrices in systems biology: rigorous methods and comparative studies. BMC Bioinformatics 9 (2008) | |
| j12 | Daoyi Dong, Chunlin Chen, Tzyh Jong Tarn, A. Pechen, Herschel Rabitz: Incoherent Control of Quantum Systems With Wavefunction-Controllable Subspaces via Quantum Reinforcement Learning. IEEE Transactions on Systems, Man, and Cybernetics, Part B 38(4): 957-962 (2008) | |
| c3 | Ofer M. Shir, Thomas Bäck, Herschel Rabitz, Marc J. J. Vrakking: On the evolution of laser pulses under a dynamic Quantum Control environment. IEEE Congress on Evolutionary Computation 2008: 2127-2134 | |
| c2 | Ofer M. Shir, Jonathan Roslund, Thomas Bäck, Herschel Rabitz: Performance analysis of derandomized evolution strategies in quantum control experiments. GECCO 2008: 519-526 | |
| c1 | Xiao-Jiang Feng, Joshua D. Rabinowitz, Herschel Rabitz: Development of laboratory and computational techniques for optimal and quantitative understanding of cellular metabolic networks. IPDPS 2008: 1-5 | |
| 2007 | ||
| j11 | Xiao-Jiang Feng, Eric Shea-Brown, Brian Greenwald, Robert Kosut, Herschel Rabitz: Optimal deep brain stimulation of the subthalamic nucleus - a computational study. Journal of Computational Neuroscience 23(3): 265-282 (2007) | |
| 2006 | ||
| j10 | Genyuan Li, Herschel Rabitz: Ratio control variate method for efficiently determining high-dimensional model representations. Journal of Computational Chemistry 27(10): 1112-1118 (2006) | |
| 2004 | ||
| j9 | Jason Ku, Xiao-Jiang Feng, Herschel Rabitz: Closed-Loop Learning Control of Bio-Networks. Journal of Computational Biology 11(4): 642-659 (2004) | |
| j8 | Genyuan Li, Jacqueline Schoendorf, Tak-San Ho, Herschel Rabitz: Multicut-HDMR with an application to an ionospheric model. Journal of Computational Chemistry 25(9): 1149-1156 (2004) | |
| 2003 | ||
| j7 | Genyuan Li, Herschel Rabitz, Sheng-Wei Wang, Panos G. Georgopoulos: Correlation method for variance reduction of Monte Carlo integration in RS-HDMR. Journal of Computational Chemistry 24(3): 277-283 (2003) | |
| j6 | Genyuan Li, Maxim Artamonov, Herschel Rabitz, Sheng-Wei Wang, Panos G. Georgopoulos, Metin Demiralp: High-dimensional model representations generated from low order terms - lp-RS-HDMR. Journal of Computational Chemistry 24(5): 647-656 (2003) | |
| 1997 | ||
| j5 | Yu Chen, Peter Gross, Viswanath Ramakrishna, Herschel Rabitz, Kenneth Mease, Harjinder Singh: Control of classical regime molecular objectives - Applications of tracking and variations on the theme. Automatica 33(9): 1617-1633 (1997) | |
| 1994 | ||
| j4 | Charles D. Schwieters, Herschel Rabitz: Display of the Flow of Energy in Molecules. Journal of Computational Chemistry 15(1): 80-89 (1994) | |
| j3 | Roberta Susnow, Clarence Schutt, Herschel Rabitz, Shankar Subramaniam: Conformational Study of Dipeptides: A Sensitivity Analysis Approach. Journal of Computational Chemistry 15(9): 947-962 (1994) | |
| j2 | Roberta Susnow, Clarence Schutt, Herschel Rabitz: Principal Component Analysis of Dipeptides. Journal of Computational Chemistry 15(9): 963-980 (1994) | |
| 1981 | ||
| j1 | Herschel Rabitz: Chemical sensitivity analysis theory with applications to molecular dynamics and kinetics. Computers & Chemistry 5(4): 167-180 (1981) | |
Colors in the list of coauthors
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