Here are included figures and other relevant data from the paper "Electro-Acoustic Nonlinear Signal Mixing" to be published in proceedings to The Device Research Conference.Introduction: Here we develop an approach to measuring nonlinear signals generated by piezoelectric materials. While linear measurements of piezoelectric materials are quite common, field- and frequency-dependent measurements of the third order piezoelectric tensor of piezoelectric materials remain rare [1, 2]. Third order piezoelectric properties are critical for next-generation design of electric-acoustic devices such as surface acoustic wave and bulk acoustic wave devices [3]. Our approach uses an electrical interferometer which cancels electrical noise and increases the dynamic range of our electrical measurements.
About this Dataset
| Title | Measuring Electro-Acoustic Mixing in Piezoelectric Materials |
|---|---|
| Description | Here are included figures and other relevant data from the paper "Electro-Acoustic Nonlinear Signal Mixing" to be published in proceedings to The Device Research Conference.Introduction: Here we develop an approach to measuring nonlinear signals generated by piezoelectric materials. While linear measurements of piezoelectric materials are quite common, field- and frequency-dependent measurements of the third order piezoelectric tensor of piezoelectric materials remain rare [1, 2]. Third order piezoelectric properties are critical for next-generation design of electric-acoustic devices such as surface acoustic wave and bulk acoustic wave devices [3]. Our approach uses an electrical interferometer which cancels electrical noise and increases the dynamic range of our electrical measurements. |
| Modified | 2023-05-10 00:00:00 |
| Publisher Name | National Institute of Standards and Technology |
| Contact | mailto:[email protected] |
| Keywords | Microwave Materials , nonlinear measurements , Nonlinear signal mixing , piezoelectric material , electro-acoustic mixing. |
{
"identifier": "ark:\/88434\/mds2-3014",
"accessLevel": "public",
"contactPoint": {
"hasEmail": "mailto:[email protected]",
"fn": "Tomasz Karpisz"
},
"programCode": [
"006:045"
],
"landingPage": "https:\/\/data.nist.gov\/od\/id\/mds2-3014",
"title": "Measuring Electro-Acoustic Mixing in Piezoelectric Materials",
"description": "Here are included figures and other relevant data from the paper \"Electro-Acoustic Nonlinear Signal Mixing\" to be published in proceedings to The Device Research Conference.Introduction: Here we develop an approach to measuring nonlinear signals generated by piezoelectric materials. While linear measurements of piezoelectric materials are quite common, field- and frequency-dependent measurements of the third order piezoelectric tensor of piezoelectric materials remain rare [1, 2]. Third order piezoelectric properties are critical for next-generation design of electric-acoustic devices such as surface acoustic wave and bulk acoustic wave devices [3]. Our approach uses an electrical interferometer which cancels electrical noise and increases the dynamic range of our electrical measurements.",
"language": [
"en"
],
"distribution": [
{
"downloadURL": "https:\/\/data.nist.gov\/od\/ds\/mds2-3014\/all_plots_V3.rar",
"description": "readme file is in rar file now.",
"mediaType": "application\/octet-stream",
"title": "Measuring Electro-Acoustic Mixing in Piezoelectric Materials"
},
{
"downloadURL": "https:\/\/data.nist.gov\/od\/ds\/mds2-3014\/3014_README_V2.txt",
"format": "TXT",
"description": "Fig 5 and 6 legend has been changed.",
"mediaType": "text\/plain",
"title": "Readme File for Measuring Electro-Acoustic Mixing in Piezelectric Materials"
},
{
"downloadURL": "https:\/\/data.nist.gov\/od\/ds\/mds2-3014\/3014_README_V2.txt",
"description": "Fig 5 and 6 legend has been changed.",
"mediaType": "text\/plain",
"title": "Article Readme file"
}
],
"bureauCode": [
"006:55"
],
"modified": "2023-05-10 00:00:00",
"publisher": {
"@type": "org:Organization",
"name": "National Institute of Standards and Technology"
},
"theme": [
"Materials:Materials characterization"
],
"keyword": [
"Microwave Materials",
"nonlinear measurements",
"Nonlinear signal mixing",
"piezoelectric material",
"electro-acoustic mixing."
]
}