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The book proposed to the readers' attention represents an attempt
to state and systematize extensive material of our experimental and
theoretical investigations of heteromagnetic interactions in
ferrite semiconductor structures of the active type carried out at
the department of general physics, Saratov State University named
after N.G. Chernyshevskiyandin the Design of ceof critical
technologies(DO CT) of SRI-Tantal Corp. of the Holding company
"Tantal" in recent years. The novelty and complexity of the
physical phenomena determined the high-technologychar- ter
ofourinvestigationsat the jointof someleads-
semiconductormicroelectronics, microcircuitry, radio engineering,
radiophysics, physics of magnetic phenomena, magnetoelectronics.
Accumulation of extensive theoretical and experimental material on
mag- toelectronics of the microwave and EHF-ranges, investigations
on bigyrotropic microelectronics in ferrite lms and structures on
their basis, decisive experiments con rming the multifunctionality
of interactions in ferrite semiconductor structures of the active
type have determined the new lead being promising. The results of
our physical investigations of multifunctional, multiparametric
interactions in ferrite semiconductorstructures of the active type
- (oscillators, c- verters, ampli ers, frequencysynthesizers, and
sensors) in the radio-wave range are discussed in the book.
Performance of such a great volume of investigations became
possible by jo- ing the efforts of leading experts and scientists
of Saratov State University, leading industrial enterprises of
Russia in the spheres of semiconductor microelectr- ics
manufacturing, development of microcontrollers, radioelectronic
systems, and ferrites.
This book is devoted to physical bases of magnetoelectronic
millimetric waves. Magnetoelectronic represents a direction on a
joint of physics of the magnetic
phenomenainmagnetoarrangedenvironments,radiophysicsofwaveandoscilla-
? toryprocessesinlayeredscreenedbigirotropic(tensorsdielectric ?
andmagnetic ? ? penetrabilities) structures, semi-conductor
microelectronics and circuitry. The millimetric range gives the
certain speci?city to researches. It, ?rst of all: losses
andtheirgrowthwithfrequencyinspendingscreensandthemetallizedcoverings,
dielectrics, semi-conductor layers, ferrite, increase in effective
internal magnetic ?elds and ?elds bias, reduction of the
geometrical sizes of coverings, structures
andtougheningofadmissionsbymanufacturingandtheassembly,newmethodsof
diagnosticsof?lmstructuresofferrite,includingnotdestroying.
Promotionofresearcheswasspenttoamillimetricrangeindirections: -
Developmentsofmethodsofthetheoreticalanalysisforstudyingpropertiesof
varioustypesofconverters; -
Developmentofvariouskindsandtypesofconverters; - Development of
methods of researches of properties of waves at excitation,
receptionanddistributioninlayeredstructuresofvariouskinds; -
Carryingoutofexperimentalresearches; -
Developmentofmethodsandmeansofnotdestroyingcontrolofparametersof
?lmstructuresofferrite; -
Developmentoperatedmagnetoelectronicstructuresanddevicesoflowandhigh
levelsofcapacity. In such order the theoretical and experimental
material received is stated in
thebook.Theseriouscontributiontoseparateresearcheshavebrought:thesenior
scienti?cemployee,Dr.LepestkinA.N.(experiment,physicalmodelling);thes-
enti?cemployee,Dr.MostovojA.A.(thetheory,physicalmodelling);theyounger
scienti?c employee, Dr. Beginin E.N. (programming, calculations,
experiments, laboratorybreadboardmodels). The basic sections of the
book were read to students of physical faculty of the Saratov State
University by it. In a special course "Magnetoelectronics of v vi
Foreword
microwaveandextremelyhighfrequencies"alsowereaccompaniedbyN.G.Cher-
shevskogoincorrespondinglaboratoryinstallations,developedincourseanddegree
worksofstudents. The second part of the book - "Heteromagnetic
microelectronics (magne- electronics of the active devices)" which
is in a stage of a writing and dev- opment of a problem, is devoted
to a new direction on creation of multipurpose operated
microdevices, the microsystems which are carrying out ?nished fu-
tionson formationof variouskindsand spectra of signals in
transistor-magnetic,
ferrite-semi-conductorstructures(strengthenings,generation,mixture,parametrical
effects,multiplication,division,frequencymodulation,magnetosensitivemodes).
This book is devoted to physical bases of magnetoelectronic
millimetric waves. Magnetoelectronic represents a direction on a
joint of physics of the magnetic
phenomenainmagnetoarrangedenvironments,
radiophysicsofwaveandoscilla- ?
toryprocessesinlayeredscreenedbigirotropic(tensorsdielectric ?
andmagnetic ? ? penetrabilities) structures, semi-conductor
microelectronics and circuitry. The millimetric range gives the
certain speci?city to researches. It, ?rst of all: losses
andtheirgrowthwithfrequencyinspendingscreensandthemetallizedcoverings,
dielectrics, semi-conductor layers, ferrite, increase in effective
internal magnetic ?elds and ?elds bias, reduction of the
geometrical sizes of coverings, structures
andtougheningofadmissionsbymanufacturingandtheassembly,
newmethodsof diagnosticsof?lmstructuresofferrite,
includingnotdestroying.
Promotionofresearcheswasspenttoamillimetricrangeindirections: -
Developmentsofmethodsofthetheoreticalanalysisforstudyingpropertiesof
varioustypesofconverters; -
Developmentofvariouskindsandtypesofconverters; - Development of
methods of researches of properties of waves at excitation,
receptionanddistributioninlayeredstructuresofvariouskinds; -
Carryingoutofexperimentalresearches; -
Developmentofmethodsandmeansofnotdestroyingcontrolofparametersof
?lmstructuresofferrite; -
Developmentoperatedmagnetoelectronicstructuresanddevicesoflowandhigh
levelsofcapacity. In such order the theoretical and experimental
material received is stated in
thebook.Theseriouscontributiontoseparateresearcheshavebrought:
thesenior scienti?cemployee, Dr.LepestkinA.N.(experiment,
physicalmodelling);thes- enti?cemployee, Dr.MostovojA.A.(thetheory,
physicalmodelling);theyounger scienti?c employee, Dr. Beginin E.N.
(programming, calculations, experiments,
laboratorybreadboardmodels). The basic sections of the book were
read to students of physical faculty of the Saratov State
University by it. In a special course "Magnetoelectronics of v vi
Foreword
microwaveandextremelyhighfrequencies"alsowereaccompaniedbyN.G.Cher-
shevskogoincorrespondinglaboratoryinstallations,
developedincourseanddegree worksofstudents. The second part of the
book - "Heteromagnetic microelectronics (magne- electronics of the
active devices)" which is in a stage of a writing and dev- opment
of a problem, is devoted to a new direction on creation of
multipurpose operated microdevices, the microsystems which are
carrying out ?nished fu- tionson formationof variouskindsand
spectra of signals in transistor-magnetic,
ferrite-semi-conductorstructures(strengthenings, generation,
mixture, parametrical effects, multiplication, division,
frequencymodulation, magnetosensitivemodes).
The book proposed to the readers' attention represents an attempt
to state and systematize extensive material of our experimental and
theoretical investigations of heteromagnetic interactions in
ferrite semiconductor structures of the active type carried out at
the department of general physics, Saratov State University named
after N.G. Chernyshevskiyandin the Design of ceof critical
technologies(DO CT) of SRI-Tantal Corp. of the Holding company
"Tantal" in recent years. The novelty and complexity of the
physical phenomena determined the high-technologychar- ter
ofourinvestigationsat the jointof someleads-
semiconductormicroelectronics, microcircuitry, radio engineering,
radiophysics, physics of magnetic phenomena, magnetoelectronics.
Accumulation of extensive theoretical and experimental material on
mag- toelectronics of the microwave and EHF-ranges, investigations
on bigyrotropic microelectronics in ferrite lms and structures on
their basis, decisive experiments con rming the multifunctionality
of interactions in ferrite semiconductor structures of the active
type have determined the new lead being promising. The results of
our physical investigations of multifunctional, multiparametric
interactions in ferrite semiconductorstructures of the active type
- (oscillators, c- verters, ampli ers, frequencysynthesizers, and
sensors) in the radio-wave range are discussed in the book.
Performance of such a great volume of investigations became
possible by jo- ing the efforts of leading experts and scientists
of Saratov State University, leading industrial enterprises of
Russia in the spheres of semiconductor microelectr- ics
manufacturing, development of microcontrollers, radioelectronic
systems, and ferrites.
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