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AFM Anodization Studied by Spectromicroscopy

Lazzarino M., Mori G., Ercolani D., Ressel B., Colli A., Sorba L., Locatelli A., Cherifi S., Ballestrazzi A., Heun S., Laboratorio TASC INFM, IT
The fabrication of state-of-the-art semiconductor nanostructures is of great interest both for fundamental physics and device applications. Besides the traditional lithography techniques, local anodic oxidation by atomic force microscopy (AFM) is emerging because of its [...]

Simulation of Wigner Function Transport in Tunneling and Quantum Structures

Jacoboni C., Bertoni A., Bordone P., Giacobbi N., University of Modena, IT
The Wigner-function approach to quantum transport in mesoscopic electron devices is presented. The concept of Wigner paths allows the formulation of a Monte Carlo simulation which is quantum mechanically rigorous and yet very similar to [...]

Simulation Methodology for Dielectrophoresis in Microelectronic Lab-on-a-chip

Leonardi A., Medoro G., Manaresi N., Tartagni M., Guerrieri R., DEIS - University of Bologna, IT
Recent trends in lab-on-a-chip show a growing use of dielectrophoresis (DEP) to manipulate biological objects such as cells and organic molecules [1], [2], [3], [4]. Bringing the advances of microelectronic miniaturization into biological and clinical [...]

A New Analytical Model of Channel Hot Electron (CHE) and CHannel Initiated Secondary ELectron (CHISEL) Current Suitable for Compact Modeling

Larcher L., Pavan P., Università di Modena e Reggio Emilia, IT
This paper presents for the first time a new approach to hot-carrier phenomena leading to an analytical model of both Channel Hot Electron (CHE) and CHannel Initiated Secondary ELectron (CHISEL) currents. This model can be [...]

Simulation of Wigner Function Transport in Tunneling and Quantum Structures

Jacoboni C., Bertoni A., Bordone P., Giacobbi N., University of Modena, IT
The Wigner-function approach to quantum transport in mesoscopic electron devices is presented. The concept of Wigner paths allows the formulation of a Monte Carlo simulation which is quantum mechanically rigorous and yet very similar to [...]

Simulation Methodology for Dielectrophoresis in Microelectronic Lab-on-a-chip

Leonardi A., Medoro G., Manaresi N., Tartagni M., Guerrieri R., DEIS - University of Bologna, IT
Recent trends in lab-on-a-chip show a growing use of dielectrophoresis (DEP) to manipulate biological objects such as cells and organic molecules [1], [2], [3], [4]. Bringing the advances of microelectronic miniaturization into biological and clinical [...]

Noise Modelling of Microwave Bipolar Transistors

Patti F., Miceli V., Spagnolo B., Università di Palermo, IT
In this paper we present a stochastic approach to study the noise modelling of bipolar microwave transistors. Starting from experimental on-wafer measurements of the scattering and noise parameters of these bipolar devices we obtain the [...]

A New Compact Model of Floating Gate Non-Volatile Memory Cells

Larcher L., Pavan P., Gattel F., Albani L., Marmiroli A., Università di Modena e Reggio Emilia, IT
This paper presents a new compact model of Floating Gate Non-Volatile Memory Cells using SPICE circuit elements. It features many advantages compared to previous models: it is simple and easy to implement and to update, [...]

Breakdown in the Output Characteristics of Deep Submicron, a-Si:H TFTs

Colalongo L., Valdinoci M., Forunato G., Mariucci L., Rudan M., University of Bologna, IT
Purpose of this work is to investigate the breakdown in the output characteristics of short-channel (0.2-1.o ,um) amorphous silicon (a-Si:H) thin-film transistors (TFTs). Such effect which, in the case of a-Si:H devices, has been detected [...]

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