We study a configuration for displacement detection consisting of a nanomechanical resonator coupled to both a radio frequency superconducting interference device and to a superconducting stripline resonator. We employ an adiabatic approximation and rotating wave approximation and calculate the displacement sensitivity. We study the performance of such a displacement detector when the stripline resonator is driven into a region of nonlinear oscillations. In this region the system exhibits noise squeezing in the output signal when homodyne detection is employed for readout. We show that displacement sensitivity of the device in this region may exceed the upper bound imposed upon the sensitivity when operating in the linear region. On the oth...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. ...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Frequency instability of superconducting resonators and qubits leads to dephasing and time-varying e...
We study a configuration for displacement detection consisting of a nanomechanical resonator coupled...
Mechanical sensors are essential tools for the detection of small forces. This thesis presents the d...
We carry out a quantum analysis of a dc superconducting quantum interference device (SQUID) mechanic...
Nanomechanical resonators having small mass, high resonance frequency and low damping rate are widel...
We provide a quantum analysis of a dc SQUID mechanical displacement detector within the subcritical ...
For more than two decades, the standard quantum limit (SQL) has served as a benchmark for researcher...
By coupling a single-electron transistor to a high–quality factor, 19.7-megahertz nanomechanical res...
A displacement sensor was constructed to monitor the motion of a piezoelectric Doppler velocity tran...
A displacement sensor was constructed to monitor the motion of a piezoelectric Doppler velocity tran...
We present measurements on nanomechanical resonators operating in the radio frequency range. We appl...
We present measurements on nanomechanical resonators operating in the radio frequency range. We appl...
The design and test of a detector of small harmonic displacements is presented. The detector is base...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. ...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Frequency instability of superconducting resonators and qubits leads to dephasing and time-varying e...
We study a configuration for displacement detection consisting of a nanomechanical resonator coupled...
Mechanical sensors are essential tools for the detection of small forces. This thesis presents the d...
We carry out a quantum analysis of a dc superconducting quantum interference device (SQUID) mechanic...
Nanomechanical resonators having small mass, high resonance frequency and low damping rate are widel...
We provide a quantum analysis of a dc SQUID mechanical displacement detector within the subcritical ...
For more than two decades, the standard quantum limit (SQL) has served as a benchmark for researcher...
By coupling a single-electron transistor to a high–quality factor, 19.7-megahertz nanomechanical res...
A displacement sensor was constructed to monitor the motion of a piezoelectric Doppler velocity tran...
A displacement sensor was constructed to monitor the motion of a piezoelectric Doppler velocity tran...
We present measurements on nanomechanical resonators operating in the radio frequency range. We appl...
We present measurements on nanomechanical resonators operating in the radio frequency range. We appl...
The design and test of a detector of small harmonic displacements is presented. The detector is base...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. ...
Mechanical resonators based on a single carbon nanotube are exceptional sensors of mass and force. T...
Frequency instability of superconducting resonators and qubits leads to dephasing and time-varying e...