• Exploring the physical channel of diffusion-based molecular communication by simulation 

      Llatser Martí, Ignacio; Pascual, Iñaki; Garralda, N.; Cabellos Aparicio, Alberto; Pierobon, M.; Alarcón Cot, Eduardo José; Solé Pareta, Josep (IEEE, 2011)
      Text en actes de congrés
      Accés obert
      Diffusion-based molecular communication is a promising bio-inspired paradigm to implement nanonetworks, i.e., the interconnection of nanomachines. The peculiarities of the physical channel in diffusion-based molecular ...
    • N3SIM : Simulator for diffusion-based molecular communication in Nanonetworks 

      Pascual Mariñelarena, Ignacio (Universitat Politècnica de Catalunya, 2011-06-15)
      Projecte/Treball Final de Carrera
      Accés obert
      English: Nanotechnology is enabling the development of devices in a scale ranging from one to a few hundred nanometers, known as nanomachines. How these nanomachines will communicate is still an open debate. Molecular ...
    • N3Sim: A simulation framework for diffusion-based molecular communication 

      Llatser Martí, Ignacio; Pascual, Iñaki; Garralda, N.; Cabellos Aparicio, Alberto; Alarcón Cot, Eduardo José (IEEE, 2011-03)
      Article
      Accés restringit per política de l'editorial
      We designed N3Sim in order to simulate a set of nanomachines which communicate through molecular diffusion in a fluid medium.
    • Yielding and irreversible deformation below the microscale: surface effects and non-mean-field plastic avalanches 

      Moretti, Paolo; Cerruti, Benedetta; Miguel, M. Carmen (2011-06-07)
      Article
      Accés obert
      Nanoindentation techniques recently developed to measure the mechanical response of crystals under external loading conditions reveal new phenomena upon decreasing sample size below the microscale. At small length scales, ...