Rhoads, J.F., Shaw, S.W., Turner, K.L.: Nonlinear dynamics and its applications in micro-and nanoresonators. J. Dyn. Syst. Measur. Control 132, 034001 (2010)
Google Scholar
Zhang, W., Turner, K.L.: Application of parametric resonance amplification in a single-crystal silicon micro-oscillator based mass sensor. Sens. Actuat. A Phys. 122, 23–30 (2005)
Google Scholar
Wadas, M.J., Tweardy, M., Bajaj, N., Murray, A.K., Chiu, G.T.C., Nauman, E.A., Rhoads, J.F.: Detection of traumatic brain injury protein biomarkers with resonant microsystems. IEEE Sens. Lett. 1, 1–4 (2017)
Google Scholar
Mahboob, I., Flurin, E., Nishiguchi, K., Fujiwara, A., Yamaguchi, H.: Interconnect-free parallel logic circuits in a single mechanical resonator. Nat. Commun. 2, 198 (2011)
Google Scholar
Hafiz, M.A.A., Kosuru, L., Younis, M.I.: Microelectromechanical reprogrammable logic device. Nat. Commun. 7, 11137 (2016)
Google Scholar
Guerra, D.N., Bulsara, A.R., Ditto, W.L., Sinha, S., Murali, K., Mohanty, P.: A noise-assisted reprogrammable nanomechanical logic gate. Nano Lett. 10, 1168–1171 (2010)
Google Scholar
Ilyas, S., Arevalo, A., Bayes, E., Foulds, I.G., Younis, M.I.: Torsion based universal MEMS logic device. Sens. Actuat. A Phys. 236, 150–158 (2015)
Google Scholar
Sinha, N., Jones, T.S., Guo, Z., Piazza, G.: Body-biased complementary logic implemented using AlN piezoelectric MEMS switches. J. Microelectromechanical Syst. 21, 484–496 (2012)
Google Scholar
Wong, A.C., Nguyen, C.C.: Micromechanical mixer-filters (mixlers). J. Microelectromechanical Syst. 13, 100–112 (2004)
Google Scholar
Ilyas, S., Chappanda, K.N., Younis, M.I.: Exploiting nonlinearities of micro-machined resonators for filtering applications. Appl. Phys. Lett. 110, 253508 (2017)
Google Scholar
Kacem, N., Hentz, S., Pinto, D., Reig, B., Nguyen, V.: Nonlinear dynamics of nanomechanical beam resonators: improving the performance of NEMS-based sensors. Nanotechnology 20, 275501 (2009)
Google Scholar
Kacem, N., Arcamone, J., Perez-Murano, F., Hentz, S.: Dynamic range enhancement of nonlinear nanomechanical resonant cantilevers for highly sensitive NEMS gas/mass sensor applications. J. Micromec. Microeng. 20, 045023 (2010)
Google Scholar
Dick, N., Grutzik, S., Wallin, C.B., Ilic, B.R., Krylov, S., Zehnder, A.T.: Actuation of higher harmonics in large arrays of micromechanical cantilevers for expanded resonant peak separation. J. Vib. Acoust. 140, 051013 (2018)
Google Scholar
Westra, H.J.R., Poot, M., Van Der Zant, H.S.J., Venstra, W.J.: Nonlinear modal interactions in clamped–clamped mechanical resonators. Phys. Rev. Lett. 105, 117205 (2010)
Google Scholar
Castellanos-Gomez, A., Meerwaldt, H.B., Venstra, W.J., van der Zant, H.S., Steele, G.A.: Strong and tunable mode coupling in carbon nanotube resonators. Phys. Rev. B 86, 041402 (2012)
Google Scholar
Li, L.L., Polunin, P.M., Dou, S., Shoshani, O., Scott Strachan, B., Jensen, J.S., Turner, K.L.: Tailoring the nonlinear response of MEMS resonators using shape optimization. Appl. Phys. Lett. 110, 081902 (2017)
Google Scholar
Castellanos-Gomez, A., van Leeuwen, R., Buscema, M., van der Zant, H.S., Steele, G.A., Venstra, W.J.: Single-layer MoS2 mechanical resonators. Adv. Mater. 25, 6719–6723 (2013)
Google Scholar
Suh, J., LaHaye, M.D., Echternach, P.M., Schwab, K.C., Roukes, M.L.: Parametric amplification and back-action noise squeezing by a qubit-coupled nanoresonator. Nano Lett. 10, 3990–3994 (2010)
Google Scholar
Eichler, A., Chaste, J., Moser, J., Bachtold, A.: Parametric amplification and self-oscillation in a nanotube mechanical resonator. Nano Lett. 11, 2699–2703 (2011)
Google Scholar
Rhoads, J.F., Shaw, S.W., Turner, K.L., Baskaran, R.: Tunable microelectromechanical filters that exploit parametric resonance. J. Vib. Acoust. 127, 423–430 (2005)
Google Scholar
Cassella, C., Strachan, S., Shaw, S.W., Piazza, G.: Phase noise suppression through parametric filtering. Appl. Phys. Lett. 110, 063503 (2017)
Google Scholar
Ilyas, S., Ramini, A., Arevalo, A., Younis, M.I.: An experimental and theoretical investigation of a micromirror under mixed-frequency excitation. J. Microelectromechanical Syst. 24, 1124–1131 (2005)
Google Scholar
Ilyas, S., Jaber, N., Younis, M.I.: MEMS logic using mixed-frequency excitation. J. Microelectromechanical Syst. 26, 1140–1146 (2017)
Google Scholar
Davies, H.G., Rajan, S.: Random superharmonic and subharmonic response: multiple time scaling of a Duffing oscillator. J. Sound Vib. 126, 195–208 (1988)
MathSciNet
MATH
Google Scholar
Nayfeh, A.H.: Introduction to Perturbation Techniques. Wiley, London (2011)
MATH
Google Scholar
Nayfeh, A.H., Mook, D.T.: Nonlinear Oscillations. Wiley, London (2008)
MATH
Google Scholar
Abdel-Rahman, E.M., Nayfeh, A.H.: Secondary resonances of electrically actuated resonant microsensors. J. Micromech. Microeng. 13, 491 (2003)
Google Scholar
Nayfeh, A.H.: The response of single degree of freedom systems with quadratic and cubic non-linearities to a subharmonic excitation. J. Sound Vib. 89, 457–470 (1983)
MATH
Google Scholar
Nayfeh, A.H., Younis, M.I.: Dynamics of MEMS resonators under superharmonic and subharmonic excitations. J. Micromech. Microeng. 15, 1840 (2005)
Google Scholar
Nayfeh, A.H.: The response of non-linear single-degree-of-freedom systems to multifrequency excitations. J. Sound Vib. 102, 403–414 (1985)
Google Scholar
Younis, M.I., Alsaleem, F.: Exploration of new concepts for mass detection in electrostatically-actuated structures based on nonlinear phenomena. J. Comput. Nonlinear Dyn. 4, 021010 (2009)
Google Scholar
Ouakad, H.M., Younis, M.I.: Nonlinear dynamics of electrically actuated carbon nanotube resonators. J. Comput. Nonlinear Dyn. 5, 011009 (2010)
Google Scholar
Nayfeh, A.H.: Quenching of primary resonance by a superharmonic resonance. J. Sound Vib. 92, 363–377 (1984)
MathSciNet
MATH
Google Scholar
Jin, Z., Wang, Y.: Electrostatic resonator with second superharmonic resonance. Sens. Actuat. A Phys. 64, 273–279 (1998)
Google Scholar
Younis, M.I., Ouakad, H.M., Alsaleem, F.M., Miles, R., Cui, W.: Nonlinear dynamics of MEMS arches under harmonic electrostatic actuation. J. Microelectromechanical Syst. 19, 647–656 (2010)
Google Scholar
Alsaleem, F.M., Younis, M.I., Ouakad, H.M.: On the nonlinear resonances and dynamic pull-in of electrostatically actuated resonators. J. Micromech. Microeng. 19, 045013 (2009)
Google Scholar
Chappanda, K.N., Ilyas, S., Kazmi, S.N.R., Holguin-Lerma, J., Batra, N.M., Costa, P.M.F.J., Younis, M.I.: A single nano cantilever as a reprogrammable universal logic gate. J. Micromech. Microeng. 27, 045007 (2017)
Google Scholar
Kazmi, S.N., Hafiz, M.A., Chappanda, K.N., Ilyas, S., Holguin, J., Costa, P.M., Younis, M.I.: Tunable nanoelectromechanical resonator for logic computations. Nanoscale 9, 3449–3457 (2017)
Google Scholar
Wenzler, J.S., Dunn, T., Toffoli, T., Mohanty, P.: A nanomechanical Fredkin gate. Nano Lett. 14, 89–93 (2013)
Google Scholar
Jalil, J., Zhu, Y., Ekanayake, C., Ruan, Y.: Sensing of single electrons using micro and nano technologies: a review. Nanotechnology 28, 142002 (2017)
Google Scholar
Zhao, J., Ding, H., Xie, J.: Electrostatic charge sensor based on a micromachined resonator with dual micro-levers. Appl. Phys. Lett. 106, 233505 (2015)
Google Scholar
Chen, D., Zhao, J., Wang, Y., Xie, J.: An electrostatic charge sensor based on micro resonator with sensing scheme of effective stiffness perturbation. J. Micromech. Microeng. 27, 065002 (2017)
Google Scholar
Zhang, H., Huang, J., Yuan, W., Chang, H.: A high-sensitivity micromechanical electrometer based on mode localization of two degree-of-freedom weakly coupled resonators. J. Microelectromechanical Syst. 25, 937–946 (2016)
Google Scholar
Younis, M.I.: MEMS Linear and Nonlinear Statics and Dynamics. Springer, Berlin (2011)
Google Scholar
Abdel-Rahman, E.M., Younis, M.I., Nayfeh, A.H.: Characterization of the mechanical behavior of an electrically actuated microbeam. J. Micromech. Microeng. 12, 759 (2002)
Google Scholar
Younis, M.I., Nayfeh, A.H.: A study of the nonlinear response of a resonant microbeam to an electric actuation. Nonlin. Dynam. 31, 91–117 (2003)
MATH
Google Scholar
Saghir, S., Bellaredj, M.L., Ramini, A., Younis, M.I.: Initially curved microplates under electrostatic actuation: theory and experiment. J. Micromech. Microeng. 26, 095004 (2016)
Google Scholar
Al Hafiz, M.A., Ilyas, S., Ahmed, S., Younis, M.I., Fariborzi, H.: A microbeam resonator with partial electrodes for logic and memory elements. IEEE J. Explor. Solid State Comput. Devices Circuits 3, 83–92 (2017)
Google Scholar