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dc.contributor.editorSchmidt, Gerhard
dc.contributor.editorQuandt, Eckhard
dc.contributor.editorSun, Nian X.
dc.contributor.editorBahr, Andreas
dc.date.accessioned2022-05-06T11:33:17Z
dc.date.available2022-05-06T11:33:17Z
dc.date.issued2022
dc.identifierONIX_20220506_9783036535531_244
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/81178
dc.description.abstractIn the field of magnetic sensing, a wide variety of different magnetometer and gradiometer sensor types, as well as the corresponding read-out concepts, are available. Well-established sensor concepts such as Hall sensors and magnetoresistive sensors based on giant magnetoresistances (and many more) have been researched for decades. The development of these types of sensors has reached maturity in many aspects (e.g., performance metrics, reliability, and physical understanding), and these types of sensors are established in a large variety of industrial applications. Magnetic sensors based on the magnetoelectric effect are a relatively new type of magnetic sensor. The potential of magnetoelectric sensors has not yet been fully investigated. Especially in biomedical applications, magnetoelectric sensors show several advantages compared to other concepts for their ability, for example, to operate in magnetically unshielded environments and the absence of required cooling or heating systems. In recent years, research has focused on understanding the different aspects influencing the performance of magnetoelectric sensors. At Kiel University, Germany, the Collaborative Research Center 1261 “Magnetoelectric Sensors: From Composite Materials to Biomagnetic Diagnostics”, funded by the German Research Foundation, has dedicated its work to establishing a fundamental understanding of magnetoelectric sensors and their performance parameters, pushing the performance of magnetoelectric sensors to the limits and establishing full magnetoelectric sensor systems in biological and clinical practice.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.classificationthema EDItEUR::P Mathematics and Science::PH Physicsen_US
dc.subject.classificationthema EDItEUR::P Mathematics and Science::PH Physics::PHK Electricity, electromagnetism and magnetismen_US
dc.subject.otherdelta-E effect
dc.subject.othermagnetoelectric
dc.subject.othermagnetoelastic
dc.subject.otherresonator
dc.subject.othertorsion mode
dc.subject.otherbending mode
dc.subject.othermagnetic modeling
dc.subject.otherMEMS
dc.subject.otherFEM
dc.subject.othermagnetoelectric sensor
dc.subject.otherSQUID
dc.subject.otherMEG
dc.subject.otherdeep brain stimulation (DBS)
dc.subject.otherdirectional DBS electrode
dc.subject.othermagnetic field measurement
dc.subject.otherelectrode localization
dc.subject.otherrotational orientation detection
dc.subject.otherBarkhausen noise
dc.subject.otherdelay line sensor
dc.subject.otherFlicker noise
dc.subject.otherKerr microscopy
dc.subject.othermagnetic domain networks
dc.subject.othermagnetic field sensor
dc.subject.othermagnetic noise
dc.subject.othermagnetoelastic delta-E effect
dc.subject.otherphase noise
dc.subject.othersurface acoustic wave
dc.subject.otherlocalization
dc.subject.othermagnetoelectric sensors
dc.subject.otherreal time
dc.subject.otherpose estimation
dc.subject.othermagnetoactive elastomer
dc.subject.otherpiezoelectric polymer
dc.subject.otherlaminated structure
dc.subject.othercantilever
dc.subject.otherdirect magnetoelectric effect
dc.subject.otherpublic understanding/outreach
dc.subject.otherME sensors
dc.subject.othermedical sensing
dc.subject.otherbiomagnetic sensing
dc.subject.otherinterdisciplinary/multidisciplinary
dc.subject.othermagnetometer
dc.subject.othersensor array
dc.subject.otherexchange bias
dc.subject.othermotion tracking
dc.subject.otherartificial fields
dc.subject.othersurface acoustic waves
dc.subject.othersurface acoustic wave sensor
dc.subject.othercurrent sensor
dc.subject.othermagnetostriction
dc.subject.otherAlScN
dc.subject.otherFeCoSiB
dc.subject.otherthin film
dc.subject.othermagnetron sputter deposition
dc.subject.otherERDA
dc.subject.otherXRD
dc.subject.otherfilm stress
dc.subject.othermagnetic properties
dc.subject.othermagnetic domains
dc.subject.otherSAW
dc.subject.othermagnetic nanoparticle
dc.subject.otherimaging
dc.subject.otherinverse problem
dc.subject.otherblind deconvolution
dc.subject.otherapplication specific signal evaluation
dc.subject.otherquantitative sensor system characterization
dc.subject.othersensor system performance
dc.titleMagnetoelectric Sensor Systems and Applications
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-3554-8
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036535531
oapen.relation.isbn9783036535548
oapen.pages200
oapen.place.publicationBasel


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