In its most basic form an oscillator consists of a resonator driven on resonance, through feedback, to create a periodic signal sustained by a static energy source. The generation of a stable frequency, the basic function of oscillators, is typically achieved by increasing the amplitude of motion of the resonator while remaining within its linear, harmonic regime. Contrary to this conventional paradigm, in this Letter we show that by operating the oscillator at special points in the resonator’s anharmonic regime we can overcome fundamental limitations of oscillator performance due to thermodynamic noise as well as practical limitations due to noise from the sustaining circuit. We develop a comprehensive model that accounts for the major con...
In this paper we talk about oscillators of optoelectronic type with intensity modulators and high-qu...
We study 1/f and narrow-bandwidth noise in precision oscillators based on high-quality factor resona...
An autonomous oscillator synchronizes to an external harmonic force only when the forcing frequency ...
In its most basic form an oscillator consists of a resonator driven on resonance, through feedback, ...
We demonstrate an analytical method for calculating the phase sensitivity of a class of oscillators ...
Frequency and time references play an essential role in modern technology and in living systems. The...
Mechanical oscillators are present in almost every electronic device. They mainly consist of a reson...
We present a method for analyzing the phase noise of oscillators based on feedback driven high quali...
We introduce a new method for reducing phase noise in oscillators, thereby improving their frequency...
Mechanical resonators are widely used as precision clocks and sensitive detectors that rely on the s...
In contrast to the well-known phenomenon of frequency stabilization in a synchronized noisy nonlinea...
We study the role of amplifier saturation in eliminating feedback noise in self-sustained oscillator...
Nanoelectromechanical systems (NEMS) have proven an excellent test bed for exploring nonlinear dynam...
We describe and demonstrate a new oscillator topology, the parametric feedback oscillator (PFO). The...
Using a new Admittance-based model for electrical noise able to handle Fluctuations and Dissipations...
In this paper we talk about oscillators of optoelectronic type with intensity modulators and high-qu...
We study 1/f and narrow-bandwidth noise in precision oscillators based on high-quality factor resona...
An autonomous oscillator synchronizes to an external harmonic force only when the forcing frequency ...
In its most basic form an oscillator consists of a resonator driven on resonance, through feedback, ...
We demonstrate an analytical method for calculating the phase sensitivity of a class of oscillators ...
Frequency and time references play an essential role in modern technology and in living systems. The...
Mechanical oscillators are present in almost every electronic device. They mainly consist of a reson...
We present a method for analyzing the phase noise of oscillators based on feedback driven high quali...
We introduce a new method for reducing phase noise in oscillators, thereby improving their frequency...
Mechanical resonators are widely used as precision clocks and sensitive detectors that rely on the s...
In contrast to the well-known phenomenon of frequency stabilization in a synchronized noisy nonlinea...
We study the role of amplifier saturation in eliminating feedback noise in self-sustained oscillator...
Nanoelectromechanical systems (NEMS) have proven an excellent test bed for exploring nonlinear dynam...
We describe and demonstrate a new oscillator topology, the parametric feedback oscillator (PFO). The...
Using a new Admittance-based model for electrical noise able to handle Fluctuations and Dissipations...
In this paper we talk about oscillators of optoelectronic type with intensity modulators and high-qu...
We study 1/f and narrow-bandwidth noise in precision oscillators based on high-quality factor resona...
An autonomous oscillator synchronizes to an external harmonic force only when the forcing frequency ...