Resonant sensors based on micro- and nano-electro mechanical systems (M/NEMS) are ubiquitous in many sensing applications due to their outstanding performance capabilities, which are directly proportional to the quality factor (Q) of the devices. We address here a recurrent question in the field: do dynamical techniques that modify the effective Q (namely parametric pumping and direct drive velocity feedback) affect the performance of said sensors? We develop analytical models of both cases, while remaining in the linear regime, and introduce noise in the system from two separate sources: thermomechanical and amplifier (read-out) noise. We observe that parametric pumping enhances the quality factor in the amplitude response, but worsens it ...
Parametric amplification is widely used in diverse areas from optics to electronic circuits to enhan...
Classical squeezing allows manipulating the noise distribution of thermal fluctuations by suppressin...
Micro and nano-mechanical oscillators are capable of ultra-sensitive force measurement, allowing pre...
Resonant sensors based on micro- and nano-electro mechanical systems (M/NEMS) are ubiquitous in many...
Quality factor (Q) is an important property of micro- and nano-electromechanical (MEM/NEM) resonator...
Microelectromechanical Systems (MEMS) are well developed in various fields benefiting from the rapid...
Mechanical and electromechanical parametric amplifiers have garnered significant interest, as of lat...
doi:10.1088/1367-2630/7/1/235 Abstract. Measuring and monitoring the dynamic parameters of a nanomec...
Advances in the field of nanoscale quantum engineered systems depend crucially on the ability to mak...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Aut...
We report, in this work, on unprecedented levels of parametric amplification in microelectromechanic...
In its most basic form an oscillator consists of a resonator driven on resonance, through feedback, ...
We investigate the surface roughness influence on the gain from parametric amplification in nanoreso...
AbstractThree measures of the dynamic response of micro-resonators are considered: gain, sharpness o...
Advances in nanoscience and nanotechnology hold enormous promises to benefit humankind in basic rese...
Parametric amplification is widely used in diverse areas from optics to electronic circuits to enhan...
Classical squeezing allows manipulating the noise distribution of thermal fluctuations by suppressin...
Micro and nano-mechanical oscillators are capable of ultra-sensitive force measurement, allowing pre...
Resonant sensors based on micro- and nano-electro mechanical systems (M/NEMS) are ubiquitous in many...
Quality factor (Q) is an important property of micro- and nano-electromechanical (MEM/NEM) resonator...
Microelectromechanical Systems (MEMS) are well developed in various fields benefiting from the rapid...
Mechanical and electromechanical parametric amplifiers have garnered significant interest, as of lat...
doi:10.1088/1367-2630/7/1/235 Abstract. Measuring and monitoring the dynamic parameters of a nanomec...
Advances in the field of nanoscale quantum engineered systems depend crucially on the ability to mak...
Thesis (Ph.D.)--Boston University PLEASE NOTE: Boston University Libraries did not receive an Aut...
We report, in this work, on unprecedented levels of parametric amplification in microelectromechanic...
In its most basic form an oscillator consists of a resonator driven on resonance, through feedback, ...
We investigate the surface roughness influence on the gain from parametric amplification in nanoreso...
AbstractThree measures of the dynamic response of micro-resonators are considered: gain, sharpness o...
Advances in nanoscience and nanotechnology hold enormous promises to benefit humankind in basic rese...
Parametric amplification is widely used in diverse areas from optics to electronic circuits to enhan...
Classical squeezing allows manipulating the noise distribution of thermal fluctuations by suppressin...
Micro and nano-mechanical oscillators are capable of ultra-sensitive force measurement, allowing pre...