Sondipon Adhikari · Glasgow

Publications by research area

Mechanics of materials, metamaterials and architected systems

Lattices, cellular and architected materials, wave propagation, band gaps, and the mechanics of materials across length scales.

Published journal papers, numbered 1 to 110 within this area and counting from the oldest. 110 have full text on this site. About this research · Full archive

2026 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 2008 2007 2006

2026 3 papers · nos. 108–110

  1. Adhikari, S., "Symmetry breaking and emergent shear-normal coupling in two-point periodic lattices", European Journal of Mechanics / A Solids, 122[1] (2026), pp. 106374.
  2. J. Selvaraj, Adhikari, S., "Lamination parameter informed encoder-decoder framework for stiffness tailoring in composite lattices", Composite Structures, 391[7] (2026), pp. 120544.
  3. Bhattacharyya, A. and Adhikari, S., "Bandgap manipulation through a bi-stable inertially amplified strongly nonlinear periodic chain", International Journal of Non-Linear Mechanics 187[8] (2026), pp. 105364.

2025 5 papers · nos. 103–107

  1. Sinha, R., Mukherjee, S., Adhikari, S., and Sarkar, S., "Harnessing von Karman nonlinearity for load-adaptive metadampers", Journal of Sound and Vibration, 621[1] (2025), pp. 119496.
  2. Banerjee, A., Bera, K. K. and Adhikari, S., "Meta-dissipation: A framework for quantifying energy dissipation in dissipative discrete periodic metamaterials", Applied Physics Letters, 127[9] (2025), pp. 121701.
  3. Panda, S., Banerjee, A., Baxy, A., Manna, B., and Adhikari, S., "Artificial neural network-based multiple-input multiple-output metamodel for prediction of design parameters for a high-speed rail viaduct", Structure and Infrastructure Engineering, 21[1] (2025), pp. 70-88.
  4. Sriharan, J., Dias, M., Adhikari, S. and Fernando, D., "A semi-analytical model for predicting the shear buckling of laminated composite honeycomb cores in sandwich panels", Composite Structures, 351[1] (2025), pp. 118629.
  5. Nesic, N., Karlicic, D., Cajic, M., Simonovic, J. and Adhikari, S., "Vibration suppression of a platform by a fractional type electromagnetic damper and inerter-based nonlinear energy sink", Applied Mathematical Modelling, 137[1] (2025), pp. 115651.

2024 10 papers · nos. 93–102

  1. Mukherjee, S., Maeder, M., Karlicic, D., Cajic, M., Kronowetter, F., Adhikari, S. and Marburg, S., "Tailoring band gap properties of curved hexagonal lattices with nodal cantilevers", Composite Structures, 345[10] (2025), pp. 118342.
  2. Dwivedi, A., Banerjee, A., Adhikari, S. and Bhattacharya, B., "Bandgap formation mechanism in tacticity inspired elastic mechanical metastructures", Scientific Reports, 14[1] (2024), pp. 24611.
  3. Guo, Z., Liu, X.,. Huang, L, Adhikari, S. and Liang, X., "Analytical homogenization for equivalent in-plane elastic moduli of prestressed lattices based on the micropolar elasticity model", Composite Structures, 346[10] (2024), pp. 118391.
  4. Subramanian, S. K., Joshi, V., Kalra, S. and Adhikari, S., "Unveiling the fatigue life of NiTi endodontic files: An integrated computational–experimental study", Journal of the Mechanical Behavior of Biomedical Materials, 157[8] (2024), pp. 106657.
  5. Banerjee, A., Bera, K. and Adhikari, S., "Enhanced damping and bandwidth in roton-like dispersion of a beyond nearest neighbor periodic chain", Physics Letters A, 524[11] (2024), pp. 129821.
  6. Rosic, N., Karlicic, D., Cajic, M., Adhikari, S. and Lazarevic, M., "Wave propagation in tailored metastructures consisting of elastic beams and rigid bodies", Philosophical Transactions of the Royal Society A, 382[2279] (2024), pp. 1-14.
  7. Cajic, M., Karlicic, D., and Adhikari, S., "Inerter-controlled topological interface states in locally resonant lattices with beyond-nearest neighbor coupling", Journal of Applied Physics, 135[5] (2024), pp. 183104.
  8. Sriharan, J., Dias, M., Fernando, D. and Adhikari, S., "A unified approach for the prediction of the effective properties of laminated composite cellular core", Engineering Structures, 299[1] (2024), pp. 117106.
  9. Dwivedi, A., Banerjee, A., Adhikari, S. and Bhattacharya, B., "Bandgap merging with double-negative metabeam", Mechanics Research Communications, 122[6] (2022), pp. 103889.
  10. Dwivedi, A., Banerjee, A., Adhikari, S. and Bhattacharya, B., "Optimal electromechanical bandgaps in piezo-embedded mechanical metamaterials", International Journal of Mechanics and Materials in Design, 17[5] (2021), pp. 419-439.

2023 6 papers · nos. 87–92

  1. Mirani, H., Gupta, V., Adhikari, S. and Bhattacharya, B., "Tailoring of interface modes in topologically protected edge states with hourglass lattice metamaterials", Journal of Sound and Vibration, 562[10] (2023), pp. 117814.
  2. Mukhopadhyay, T., Naskar, S., Kundu, D. and Adhikari, S., "Effective elastic moduli of space-filled multi-material composite lattices", Composites Communications, 42[10] (2023), pp. 101656.
  3. Mukherjee, S. and Adhikari, S., "The mechanics and optimal design of micro-architectured stepped hexagonal lattices", Composite Structures, 313[6] (2023), pp. 116900.
  4. Karlicic, D., Cajic, M., Paunovic, S., Obradovic, A., Adhikari, S., and Christensen, J., "Non-reciprocal wave propagation in time-modulated elastic lattices with inerters", Applied Mathematical Modelling, 117[5] (2023), pp. 316-335.
  5. Mukherjee, S., Cajic, M., Karlicic, D. and Adhikari, S., "Enhancement of band-gap characteristics in hexagonal and re-entrant lattices via curved beams", Composite Structures, 306[2] (2023), pp. 116591.
  6. Cajic, M., Karlicic, D., Christensen, J. and Adhikari, S., "Tunable topological interface states in one-dimensional inerter-based locally resonant lattices with damping", Journal of Sound and Vibration, 542[1] (2023), pp. 117326.

2022 9 papers · nos. 78–86

  1. Liu, X., Huang, L. and Adhikari, S., "Equivalent in-plane dynamic elastic moduli of lattice structures with Plateau borders", Composite Structures, 299[11] (2022), pp. 116056.
  2. Singh, A., Mukhopadhyay, T., Adhikari, S. and Bhattacharya, B., "Extreme on-demand contactless modulation of elastic properties in magnetostrictive lattices", Smart Materials and Structures, 31[12] (2022), pp. 125005.
  3. Bhatt, A., Banerjee, A. and Adhikari, S., "Closed-form solutions for attenuation peaks and band boundaries of general monocoupled systems", Journal of Sound and Vibration, 541[12] (2022), pp. 117318.
  4. Hussein, M. I., Patrick, J., Banerjee, A. and Adhikari, S., "Metadamping in inertially amplified metamaterials: Trade-off between spatial attenuation and temporal attenuation", Journal of Sound and Vibration, 531[8] (2022), pp. 116977.
  5. Gupta, V., Bhattacharya, B. and Adhikari, S., "Energy absorption of hourglass shaped lattice metastructures", Experimental Mechanics, 62[4] (2022), pp. 943-952.
  6. Liu, X., Liu, Z., Adhikari, S., Li, Y.-L. and Banerjee, J. R., "Exact wave propagation analysis of lattice structures based on the dynamic stiffness method and the Wittrick-Williams algorithm", Mechanical Systems and Signal Processing, 174[7] (2022), pp. 109044.
  7. Singh, A., Mukhopadhyay, T., Adhikari, S. and Bhattacharya, B., "Active multi-physical modulation of Poisson's ratios in composite piezoelectric lattices: on-demand sign reversal", Composite Structures, 280[1] (2022), pp. 114857.
  8. Mukherjee, S. and Adhikari, S., "The in-plane mechanics of a family of curved 2D lattices", Composite Structures, 280[1] (2022), pp. 114859.
  9. Singh, A., Mukhopadhyay, T., Adhikari, S. and Bhattacharya, B., "Voltage-dependent modulation of elastic moduli in lattice metamaterials: Emergence of a programmable state-transition capability", International Journal of Solids and Structures, 208-209[1] (2021), pp. 31-48.

2021 12 papers · nos. 66–77

  1. Chatterjee, T., Karlicic, D., Adhikari, S. and Friswel, M. I., "Wave propagation in randomly parameterized 2D lattices via machine learning", Composite Structures, 275[11] (2021), pp. 114386.
  2. Mukherjee, S. and Adhikari, S., "A general analytical framework for the mechanics of heterogeneous hexagonal lattices", Thin-Walled Structures, 167[10] (2021), pp. 108188.
  3. Banerjee, A., Adhikari, S., Hussein, M. I., "Inertial amplification band-gap generation by coupling a levered mass with a locally resonant mass", International Journal of Mechanical Sciences, 207[10] (2021), pp. 106630.
  4. Adhikari, S., "The eigenbuckling analysis of hexagonal lattices: Closed-form solutions", Proceedings of the Royal Society of London, Series - A, 477[2251] (2021), pp. 20210244.
  5. Patrick, J., Adhikari, S. and Hussein, M., "Brillouin-zone characterization of piezoelectric material intrinsic energy harvesting capacity", Smart Materials and Structures, 30[8] (2021), pp. 085022.
  6. Cajic, M., Christensen, J. and Adhikari, S., "Tuning of topological interface modes in an elastic beam array system with inerters", International Journal of Mechanical Sciences, 205[9] (2021), pp. 106573.
  7. Singh, S. K., Banerjee, A., Verma, R. K. and Adhikari, S., "Spectral element formulation for damped transversely isotropic Micropolar-Cosserat layered composite panels", Mechanics of Materials, 160[9] (2021), pp. 103898.
  8. Adhikari, S., "The in-plane mechanical properties of highly compressible and stretchable 2D lattices", Composite Structures, 9[6] (2021), pp. 589.
  9. Adhikari, S.,, Mukhopadhyay, T., and Liu, X., "Broadband dynamic elastic moduli of honeycomb lattice materials: A generalized analytical approach", Mechanics of Materials, 157[6] (2021), pp. 103796.
  10. Cajic, M., Karlicic, D., Paunovic, S. and Adhikari, S., "Bloch waves in an array of elastically connected periodic slender structures", Mechanical Systems and Signal Processing, 155[6] (2021), pp. 107591.
  11. Adhikari, S., Karlicic, D. and Liu, X., "Dynamic stiffness method for nonlocal damped nano-beams on elastic foundation", European Journal of Mechanics-A/Solids, 86[3-4] (2021), pp. 104144.
  12. Karlicic, D., Cajic, M., Chatterjee, T. and Adhikari, S., "Wave propagation in mass embedded and pre-stressed hexagonal lattices", Composite Structures, 256[1] (2021), pp. 113087.

2020 6 papers · nos. 60–65

  1. Gupta, V., Adhikari, S., Bhattacharya, B., "Exploring the dynamics of hourglass shaped lattice metastructures", Nature Scientific Reports, 10[12] (2020), pp. 20943.
  2. Mukhopadhyay, T., Mahata, A., Naskar, S. and Adhikari, S., "Probing the effective Young's Modulus of 'Magic Angle' inspired multi-functional twisted nano-heterostructures", Advanced Theory and Simulations, 3[10] (2020), pp. 2000129.
  3. Mukhopadhyay, T., Naskar, S. and Adhikari, S., "Anisotropy tailoring in geometrically isotropic multi-material lattices", Extreme Mechanics Letters, 40[10] (2020), pp. 100934.
  4. Cajic, M., Karlicic, D., Paunovic, S. and Adhikari, S., "A fractional calculus approach to metadamping in phononic crystals and acoustic metamaterials", Theoretical and Applied Mechanics, 47[1] (2020), pp. 81-97.
  5. Bhaskar, J., Sharma, A., Bhattacharya, B. and Adhikari, S., "A review on shape memory alloy reinforced polymer composite materials and structures", Smart Materials and Structures, 29[7] (2020), pp. 073001.
  6. Adhikari, S., Mukhopadhyay, T., Shaw, A. and Lavery, N. P., "Apparent negative values of Young's moduli of lattice materials under dynamic conditions", International Journal of Engineering Science, 150[5] (2020), pp. 103231.

2019 3 papers · nos. 57–59

  1. Mukhopadhyay, T. Adhikari, S. and Alu, A., "Theoretical limits for negative elastic moduli in sub-acoustic lattice materials", Physical Review B, 99[9] (2019), pp. 094108.
  2. Mukhopadhyay, T.. and Adhikari, S. and Alu, A., "Probing the frequency-dependent elastic moduli of lattice materials", Acta Materialia, 165[2] (2019), pp. 654-665.
  3. Mukhopadhyay, T., Adhikari, S. and Batou, A., "Frequency domain homogenization for the viscoelastic properties of spatially correlated quasi-periodic lattices", International Journal of Mechanical Sciences, 150[1] (2019), pp. 784-806.

2018 4 papers · nos. 53–56

  1. Mukhopadhyay, T., Mahata, A., Adhikari, S. and Asle Zaeem, M., "Probing the shear modulus of two-dimensional multiplanar nanostructures and heterostructures", Nanoscale, 10[11] (2018), pp. 5280-5294.
  2. Zhang, D. P., Lei, Y., and Adhikari, S., "Flexoelectric effect on vibration responses of piezoelectric nanobeams embedded in viscoelastic medium based on nonlocal elasticity theory", Acta Mechanica, 229[6] (2018), pp. 2379-2392.
  3. Karlicic, D., Cajic, M. and Adhikari, S., "Dynamic stability of a nonlinear multiple-nanobeam systems", Nonlinear Dynamics, 93[4] (2018), pp. 1495-1517.
  4. Mukhopadhyay, T., Mahata, A., Adhikari, S. and Asle Zaeem, M., "Effective mechanical properties of multilayer nano-heterostructures", Nature Scientific Reports, (2017), pp. 15818:1-13.

2017 6 papers · nos. 47–52

  1. Mukhopadhyay, T. and Adhikari, S., "Effective in-plane elastic properties of quasi-random spatially irregular hexagonal lattices", International Journal of Engineering Science, 119[10] (2017), pp. 142-179.
  2. Martinez-Ayuso, G., Friswell, M. I., Adhikari, S., Khodaparast, H. H. and Berger, H., "Homogenization of porous piezoelectrical materials", International Journal of Solid and Structures, 113-114[5] (2017), pp. 218-229.
  3. Karlicic, D., Cajic, M., Adhikari, S., Kozic, P. and Murmu, T., "Vibrating nonlocal multi-nanoplate system under inplane magnetic field", European Journal of Mechanics - A/Solids, 64[7-8] (2017), pp. 29-45.
  4. Mukhopadhyay, T., Mahata, A., Asle Zaeem, M. and Adhikari, S., "Effective elastic properties of two dimensional multiplanar hexagonal nano-structures", 2D Materials, 4[2] (2017), pp. 025006:1-15.
  5. Mukhopadhyay, T. and Adhikari, S., "Stochastic mechanics of metamaterials", Composite Structures, 162[2] (2017), pp. 85-97.
  6. Mukhopadhyay, T. and Adhikari, S., "Effective in-plane elastic properties of auxetic honeycombs with spatial irregularity", Mechanics of Materials, 95[2] (2016), pp. 204-222.

2016 2 papers · nos. 45–46

  1. Mukhopadhyay, T. and Adhikari, S., "Free vibration of sandwich panels with randomly irregular honeycomb core", ASCE Journal of Engineering Mechanics, 141[6] (2016), pp. 06016008:1-5.
  2. Mukhopadhyay, T. and Adhikari, S., "Equivalent in-plane elastic properties of irregular honeycombs: An analytical approach", International Journal of Solids and Structures, 91[8] (2016), pp. 169-184.

2015 4 papers · nos. 41–44

  1. Karlicic, D., Kozic, P., Murmu, T. and Adhikari, S., "Vibration insight of a nonlocal viscoelastic coupled multi-nanorod system", European Journal of Mechanics - A/Solids, 54[12] (2015), pp. 132-145.
  2. Karlicic, D., Cajic, M., Murmu, T., Kozic, P. and Adhikari, S., "Nonlocal longitudinal vibration of a complex multi-nanorod system affected by transversal magnetic field", Meccanica, 50[6] (2015), pp. 1605-1621.
  3. Ghavanloo, E., Fazelzadeh, S.A. , Murmu, T. and Adhikari, S., "Radial breathing-mode frequency of elastically confined spherical nanoparticles subjected to circumferential magnetic field", Physica E: Low-dimensional Systems and Nanostructures, 66[2] (2015), pp. 228-233.
  4. Karlicic, D., Cajic,M., Murmu, T. and Adhikari, S., "Nonlocal longitudinal vibration of viscoelastically coupled double-nanorod systems", European Journal of Mechanics - A/Solids, 49[1] (2015), pp. 183-196.

2014 6 papers · nos. 35–40

  1. Lei, Y., Murmu, T., Adhikari, S. and Friswell, M. I., "Asymptotic frequencies of various damped nonlocal beams and plates", Mechanics Research Communication, 62[1] (2014), pp. 94-101.
  2. Karlicic, D., Adhikari, S., Murmu, T. and Cajic, M., "Exact closed-form solution for non-local vibration and biaxial buckling of bonded multi-nanoplate system", Composites Part B: Engineering, 66[2] (2014), pp. 328-339.
  3. Karlicic, D., Murmu, T., Cajic, M., Kozic, P. and Adhikari, S., "Dynamics of multiple viscoelastic carbon nanotube based nanocomposites with axial magnetic field", Journal of Applied Physics, 115[23] (2014), pp. 234303:1-14.
  4. Murmu, T., Adhikari, S. and McCarthy, M., "Axial vibration of embedded nanorods under transverse magnetic field effects via nonlocal elastic continuum theory", Journal of Computational and Theoretical Nanoscience, 11[5] (2014), pp. 1230-1236.
  5. Ajaj, R. M., Friswell, M. I., Flores, E. I. S., Keane, A., Isikveren, A. T., Allegri, G. and Adhikari, S., "An integrated conceptual design study using span morphing technology", Journal of Intelligent Material Systems and Structures, 25[8] (2014), pp. 989-1008.
  6. Adhikari, S., Murmu, T. and McCarthy, M. A., "Frequency domain analysis of nonlocal rods embedded in an elastic medium", Physica E: Low-dimensional Systems and Nanostructures, 59[5] (2014), pp. 33-40.

2013 6 papers · nos. 29–34

  1. Murmu, T., Adhikari, S., McCarthy, M. A. and Wang, C. Y., "Insights into relative lower frequencies and buckling loads of monolayer graphene sheets via nonlocal elasticity theory: size-dependent Young's modulus approach", Nanoscience and Nanotechnology Letters, 5[10] (2013), pp. 1097-1102.
  2. Lei, Y., Murmu, T., Adhikari, S. and Friswell, M. I., "Dynamic characteristics of damped viscoelastic nonlocal Euler-Bernoulli beams", European Journal of Mechanics - A/Solids, 42[12] (2013), pp. 125-136.
  3. Allegri, G., Scarpa, F., Chowdhury, R. and Adhikari, S., "Wave propagation in periodically supported nanoribbons: a nonlocal elasticity approach", Transactions of ASME, Journal of Vibration and Acoustics, 135[4] (2013), pp. 041017:1-8.
  4. Lei, Y., Adhikari, S. and Friswell, M. I., "Vibration of nonlocal Kelvin-Voigt viscoelastic damped Timoshenko beams", International Journal of Engineering Science, 66-67[1] (2013), pp. 1-13.
  5. Murmu, T., McCarthy, M. and Adhikari, S., "In-plane magnetic field affected transverse vibration of embedded single-layer graphene sheets using equivalent nonlocal elasticity approach", Composite Structures, 96[2] (2013), pp. 57-63.
  6. Adhikari, S., Murmu, T. and McCarthy, M., "Dynamic finite element analysis of axially vibrating nonlocal rods", Finite Elements in Analysis and Design, 63[1] (2013), pp. 42-50.

2012 3 papers · nos. 26–28

  1. Murmu, T., McCarthy, M. and Adhikari, S., "Vibration response of double-walled carbon nanotubes subjected to an externally applied longitudinal magnetic field: A nonlocal elasticity approach", Journal of Sound and Vibration, 331[23] (2012), pp. 5069-5086.
  2. Murmu, T. and Adhikari, S., "Nonlocal elasticity based vibration of initially pre-stressed coupled nanobeam systems", European Journal of Mechanics - A/Solids, 34[1] (2012), pp. 52-62.
  3. Murmu, T., McCarthy, M. and Adhikari, S., "Nonlocal elasticity based magnetic field affected vibration response of double single-walled carbon nanotube systems", Journal of Applied Physics, 111[11] (2011), pp. 113511:1-7.

2011 9 papers · nos. 17–25

  1. Murmu, T. and Adhikari, S., "Nonlocal vibration of bonded double-nanoplate-systems", Composites Part B: Engineering, 42[7] (2011), pp. 1901-1911.
  2. Adhikari, S. and Chowdhury, R., "Vibration spectra of fullerene family", Physics Letters A, 375[22] (2011), pp. 1276-1280.
  3. Murmu, T., Adhikari, S. and Wang, C. W., "Torsional vibration of carbon nanotube-buckyball systems based on nonlocal elasticity theory", Physica E: Low-dimensional Systems and Nanostructures, 43[6] (2011), pp. 1276-1280.
  4. Wang, C. W. and Adhikari, S., "ZnO-CNT composite nanowires as nanoresonators", Physics Letters A, 375[22] (2011), pp. 2171-2175.
  5. Chowdhury, R., Adhikari, S., Scarpa, F. and Friswell, M. I., "Transverse vibration of single-layer graphene sheets", Journal of Physics D: Applied Physics, 44[20] (2011), pp. 205401:1-11.
  6. Wang, C. W., Murmu, T. and Adhikari, S., "Mechanisms of nonlocal effect on the vibration of nanoplates", Applied Physics Letters, 98[15] (2011), pp. 153101:1-3.
  7. Murmu, T. and Adhikari, S., "Nonlocal vibration of carbon nanotubes with attached buckyballs at tip", Mechanics Research Communications, 38[1] (2011), pp. 62-67.
  8. Chowdhury, R., Adhikari, S. and Scarpa, F., "Vibrational analysis of ZnO nanotubes: A molecular mechanics approach", Applied Physics A, 102[2] (2011), pp. 301-308.
  9. Murmu, T. and Adhikari, S., "Axial instability of double-nanobeam-systems", Physics Letters A, 375[3] (2011), pp. 601-608.

2010 9 papers · nos. 8–16

  1. Murmu, T. and Adhikari, S., "Scale-dependent vibration analysis of prestressed carbon nanotubes undergoing rotation", Journal of Applied Physics, 108[12] (2010), pp. 123507:1-7.
  2. Murmu, T. and Adhikari, S., "Nonlocal effects in the longitudinal vibration of double-nanorod systems", Physica E: Low-dimensional Systems and Nanostructures, 43[1] (2010), pp. 415-422.
  3. Murmu, T. and Adhikari, S., "Nonlocal transverse vibration of double-nanobeam-systems", Journal Applied Physics, 108[8] (2010), pp. 083514:1-9.
  4. Chowdhury, R., Wang, C. W., Adhikari, S. and Scarpa, F., "Vibration and symmetry-breaking of boron nitride nanotubes", Nanotechnology, 21[36] (2010), pp. 365702:1-9.
  5. Wang, C. Y., Zhao, Y., Adhikari, S. and Feng, Y. T., "Vibration of axially strained triple-wall carbon nanotubes", Journal of Computational and Theoretical Nanoscience, 7[11] (2010), pp. 2176-2185.
  6. Chowdhury, R., Wang, C. Y., Adhikari, S. and Tong, F. M., "Sliding oscillations of multiwall carbon nanotubes", Physica E: Low-dimensional Systems and Nanostructures, 42[9] (2010), pp. 2295-2300.
  7. Wang, C. Y., Li, C. F. and Adhikari, S., "Axisymmetric vibration of singlewall carbon nanotubes in water", Physics Letters A, 374[24] (2010), pp. 2467-2474.
  8. Gil, A. J., Adhikari, S., Scarpa, F. and Bonet, J., "The formation of wrinkles in single layer graphene sheets under nanoindentation", Journal of Physics: Condensed Matter, 22[14] (2010), pp. 145302:1-6.
  9. Chowdhury, R., Wang, C. Y. and Adhikari, S., "Low-frequency vibration of multiwall carbon nanotubes with heterogeneous boundaries", Journal of Physics D: Applied Physics, 43[11] (2010), pp. 085405:1-8.

2009 2 papers · nos. 6–7

  1. Wang, C. Y., Li, C. F. and Adhikari, S., "Dynamic behaviors of microtubules in cytosol", Journal of Biomechanics, 42[9] (2009), pp. 1270-1274.
  2. Tong, F. M., Wang, C. Y. and Adhikari, S., "Axial buckling of multiwall carbon nanotubes with heterogeneous boundary conditions", Journal of Applied Physics, 105 (2009), pp. 094325:1-7.

2008 2 papers · nos. 4–5

  1. Scarpa, F. and Adhikari, S., "Uncertainty modelling of carbon nanotube terahertz oscillators", Journal of Non-Crystalline Solids, 354[35-39] (2008), pp. 4151-4156.
  2. Scarpa, F. and Adhikari, S., "A mechanical equivalence for the Poisson's ratio and thickness of C-C bonds in single wall carbon nanotubes", Journal of Physics D: Applied Physics, 41 (2008) 085306 (5pp).

2007 2 papers · nos. 2–3

  1. Friswell, M. I, Adhikari, S. and Lei, Y., "Non-local finite element analysis of damped beams", International Journal of Solids and Structures, 44[22-23] (2007), pp. 7564-7576.
  2. Friswell, M. I, Adhikari, S. and Lei, Y., "Vibration analysis of beams with non-local foundations using the finite element method", International Journal of Numerical Methods in Engineering, 71[11] (2007), pp. 1365-1386.

2006 1 paper · no. 1

  1. Lei, Y., Friswell, M. I. and Adhikari, S. "A Galerkin method for distributed systems with non-local damping", International Journal of Solids and Structures, 43[11-12] (2006), pp. 3381-3400.