2018
DOI: 10.1038/s41928-017-0009-5
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Distortion-free measurement of electric field strength with a MEMS sensor

Abstract: Small-scale and distortion-free measurement of electric fields is crucial for applications such as surveying atmospheric electrostatic fields, lightning research, and safeguarding areas close to high-voltage power lines. A variety of measurement systems exist, the most common of which are field mills, which work by picking up the differential voltage of the measurement electrodes while periodically shielding them with a grounded electrode. However, all current approaches are either bulky, suffer from a strong … Show more

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Cited by 77 publications
(44 citation statements)
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“…In contrast to the setup previously used and reported, e.g., in [2], the new set-up for characterizing the MEMS chips features a better and more reproducible positioning of the chip in relation to the light path axis. Additionally, a higher LED current of 50 mA and, therefore, larger light flux through the structure was used.…”
Section: Measurement Set-upmentioning
confidence: 90%
See 1 more Smart Citation
“…In contrast to the setup previously used and reported, e.g., in [2], the new set-up for characterizing the MEMS chips features a better and more reproducible positioning of the chip in relation to the light path axis. Additionally, a higher LED current of 50 mA and, therefore, larger light flux through the structure was used.…”
Section: Measurement Set-upmentioning
confidence: 90%
“…Our new type of sensor enables these measurements [2,3]. It is based on a micro-opto-electromechanical system (MOEMS) including a readout based on fiber optics.…”
Section: Introductionmentioning
confidence: 99%
“…This kind of optical readout of the mechanical motion is highly sensitive and apart from an optical power input completely passive enabling remarkable results [7,8]. The sensitivity of the sensor depends on the number of holes with length l h and on the input optical power [6].…”
Section: Sensor and Componentsmentioning
confidence: 99%
“…Recently, a transduction method was introduced, enabling field mapping in meso and macroscopic volumes [22,23]. It exploits the electrostatic induction occurring inside a conducting body (here, doped silicon).…”
mentioning
confidence: 99%