International audienceResonator based sensing devices operated within a fluid medium often require maximal quality factors in order to enhance their performances. We present a tuning fork shape optimization formalism based on both analytical and numerical approaches, and identify the geometry with the lowest possible losses. We also report on the fabrication of a homemade tuning fork based on this optimization process, and experimental measurements show a quality factor of Q = 41000 in air at atmospheric pressure. This value represents, to the best of our knowledge, the record quality factor for a flexural resonator in ambient air
We study the dynamic response of a mechanical quartz tuning fork in the temperature range from 9 to ...
We report on the design, realization, and performance of novel quartz tuning forks (QTFs) optimized ...
International audienceThe feasibility of using commercially available steel tuning forks for viscosi...
International audienceResonator based sensing devices operated within a fluid medium often require m...
This paper presents a method of dynamically balancing tuning fork microresonators, enabling maximiza...
Abstract — This paper presents a method of dynamically balancing tuning fork microresonators, enabli...
Quartz tuning forks (QTFs) are piezo-Transducers that have been implemented for numerous application...
We report a detailed experimental and theoretical analysis of the influence of quartz tuning fork (Q...
International audienceMaximal quality factors are often a synonym for high performances for resonato...
This paper introduces an electrothermally actuated, piezoresistively detected, silicon-based tuning ...
AbstractMiniaturized resonators are critical components in many application fields such as sensing, ...
International audienceWe discuss various aspects of the quartz tuning fork, ranging from its origina...
This paper reports a preliminary examination of the effect of anchor geometry design on the quality ...
This paper presents a double-ended tuning fork (DETF) force sensor with a resolution of 7nN and a ra...
Application of piezoelectric flexural mechanical resonators such as tuning forks to accurate measure...
We study the dynamic response of a mechanical quartz tuning fork in the temperature range from 9 to ...
We report on the design, realization, and performance of novel quartz tuning forks (QTFs) optimized ...
International audienceThe feasibility of using commercially available steel tuning forks for viscosi...
International audienceResonator based sensing devices operated within a fluid medium often require m...
This paper presents a method of dynamically balancing tuning fork microresonators, enabling maximiza...
Abstract — This paper presents a method of dynamically balancing tuning fork microresonators, enabli...
Quartz tuning forks (QTFs) are piezo-Transducers that have been implemented for numerous application...
We report a detailed experimental and theoretical analysis of the influence of quartz tuning fork (Q...
International audienceMaximal quality factors are often a synonym for high performances for resonato...
This paper introduces an electrothermally actuated, piezoresistively detected, silicon-based tuning ...
AbstractMiniaturized resonators are critical components in many application fields such as sensing, ...
International audienceWe discuss various aspects of the quartz tuning fork, ranging from its origina...
This paper reports a preliminary examination of the effect of anchor geometry design on the quality ...
This paper presents a double-ended tuning fork (DETF) force sensor with a resolution of 7nN and a ra...
Application of piezoelectric flexural mechanical resonators such as tuning forks to accurate measure...
We study the dynamic response of a mechanical quartz tuning fork in the temperature range from 9 to ...
We report on the design, realization, and performance of novel quartz tuning forks (QTFs) optimized ...
International audienceThe feasibility of using commercially available steel tuning forks for viscosi...