Peshkovsky A S, Forguez J, Cerioni L, Pusiol D J
Facultad de Matemática, Astronomía y Física, Universidad Nacional de Córdoba, Ciudad Universitaria, Argentina.
J Magn Reson. 2005 Nov;177(1):67-73. doi: 10.1016/j.jmr.2005.07.004.
A simple Q-damper device for active probe recovery time reduction is introduced along with a straightforward technique for the circuit's component value optimization. The device is inductively coupled to a probe through a coupling transformer positioned away from the main coil, which makes the design independent of the coil type being used. The Q-damper is a tuned circuit, which is resonant at the same frequency as the probe and can be actively interrupted. When the circuit is interrupted, it is detuned and, thereby, is uncoupled from the probe, which operates normally. Turning the device on leads to re-coupling of the circuits and causes splitting of the probe's resonance line, which can be observed through its drive port. A resistance of an appropriate value is introduced into the Q-damper circuit, resulting in smoothing of the resonance splitting into one broad line, representing the coupled system's low-Q state, in which the energy stored in the main coil is efficiently dissipated. The circuit's component values are optimized by monitoring the shape of this low-Q state. Probe recovery time reduction by, approximately, an order of magnitude has been obtained with this device. Application of the device during an NQR experiment led to an increase in the signal-to-noise ratio by a factor of 4.9.
介绍了一种用于缩短有源探头恢复时间的简单Q阻尼器装置,以及一种用于优化电路元件值的直接技术。该装置通过一个远离主线圈的耦合变压器与探头电感耦合,这使得设计与所使用的线圈类型无关。Q阻尼器是一个调谐电路,其谐振频率与探头相同,并且可以被主动中断。当电路中断时,它失谐,从而与正常工作的探头解耦。打开该装置会导致电路重新耦合,并使探头的谐振线分裂,这可以通过其驱动端口观察到。在Q阻尼器电路中引入一个适当值的电阻,会使谐振分裂平滑成一条宽线,代表耦合系统的低Q状态,其中主线圈中存储的能量被有效耗散。通过监测这种低Q状态的形状来优化电路的元件值。使用该装置可使探头恢复时间缩短约一个数量级。在NQR实验中应用该装置使信噪比提高了4.9倍。