Abhiram Muralidhar
Affiliations: | Intel Corporation, Santa Clara, CA, United States |
Area:
Computational Lithography, Polymer simulationGoogle:
"Abhiram Muralidhar"
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Publications
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Werner E, Jain A, Muralidhar A, et al. (2018) Hairpins in the conformations of a confined polymer. Biomicrofluidics. 12: 024105 |
Reinhart WF, Reifenberger JG, Gupta D, et al. (2017) Erratum: "Distribution of distances between DNA barcode labels in nanochannels close to the persistence length" [J. Chem. Phys. 142, 064902 (2015)]. The Journal of Chemical Physics. 147: 029901 |
Muralidhar A, Quevillon MJ, Dorfman KD. (2016) The Backfolded Odijk Regime for Wormlike Chains Confined in Rectangular Nanochannels. Polymers. 8 |
Muralidhar A, Dorfman KD. (2016) Backfolding of DNA Confined in Nanotubes: Flory Theory versus the Two-State Cooperativity Model Macromolecules. 49: 1120-1126 |
Smithe TS, Iarko V, Muralidhar A, et al. (2015) Finite-size corrections for confined polymers in the extended de Gennes regime. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 92: 062601 |
Gupta D, Miller JJ, Muralidhar A, et al. (2015) Experimental evidence of weak excluded volume effects for nanochannel confined DNA. Acs Macro Letters. 4: 759-763 |
Muralidhar A, Dorfman KD. (2015) Kirkwood diffusivity of long semiflexible chains in nanochannel confinement. Macromolecules. 48: 2829-2839 |
Reinhart WF, Reifenberger JG, Gupta D, et al. (2015) Distribution of distances between DNA barcode labels in nanochannels close to the persistence length. The Journal of Chemical Physics. 142: 064902 |
Reinhart WF, Reifenberger JG, Gupta D, et al. (2015) Distribution of distances between DNA barcode labels in nanochannels close to the persistence length Journal of Chemical Physics. 142 |
Gupta D, Miller JJ, Muralidhar A, et al. (2015) Experimental Evidence of Weak Excluded Volume Effects for Nanochannel Confined DNA Acs Macro Letters. 4: 759-763 |