Vortex electronics and SQUIDs:
Gespeichert in:
Weitere Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan u.a.
Springer
2003
|
Schriftenreihe: | Topics in applied physics
91 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XI, 302 S. Ill., graph. Darst. |
ISBN: | 3540402314 |
Internformat
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245 | 1 | 0 | |a Vortex electronics and SQUIDs |c Takeshi Kobayashi ... (ed.) |
264 | 1 | |a Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan u.a. |b Springer |c 2003 | |
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490 | 1 | |a Topics in applied physics |v 91 | |
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650 | 4 | |a Quantentheorie | |
650 | 4 | |a Electrocardiography |x instrumentation | |
650 | 4 | |a Electromagnetic Phenomena | |
650 | 4 | |a Electronics | |
650 | 4 | |a High temperature superconductors | |
650 | 4 | |a Immunoassay |x instrumentation | |
650 | 4 | |a Physics | |
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Datensatz im Suchindex
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adam_text | CONTENTS INTRODUCTION T. KOBAYASHI . .. .. .. .. .. .. .. . .. .. .. ..
.. .. .. .. . .. .. .. .. .. .. .. . .. .. .. .. .. . 1 VORTICES IN
HIGH- T C SUPERCONDUCTORS S. KURIKI, S. HIRANO, A. MAEDA AND T. KISS .
.. .. .. . .. .. .. .. .. .. .. .. . .. . 5 1. INTRODUCTION . .. .. . ..
.. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. ..
5 2. BASIC PHYSICS OF VORTICES . .. .. .. .. .. .. . .. .. .. .. .. ..
.. .. . .. .. .. .. .. .. . 7 2.1. TYPE-II SUPERCONDUCTIVITY AND VORTEX
.. .. . .. .. .. .. .. .. .. .. . .. . 7 2.2. VORTEX LATTICE, BRAGG
GLASS .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. . 8 2.3.
MOTION OF A VORTEX: FLUX FLOW AND FLUX CREEP .. .. .. . .. .. .. .. . 9
2.4. MICROSCOPIC ELECTRONIC STRUCTURE OF VORTEX CORE .. .. . .. .. .. ..
. 10 3. VORTICES IN HIGH- T C SUPERCONDUCTORS . . .. .. .. .. .. .. ..
.. . .. .. .. .. .. .. 11 3.1. CHARACTERISTIC ASPECTS OF THE MIXED STATE
OF HIGH- T C SUPERCONDUCTORS .. .. .. . .. .. .. .. .. .. .. . .. .. ..
.. .. .. 11 3.2. VORTICES IN HIGH- T C SUPERCONDUCTORS .. .. . .. .. ..
.. .. .. .. .. . .. . 12 3.3. EQUILIBRIUM PHASE DIAGRAM . .. .. .. .. ..
. .. .. .. .. .. .. .. .. . .. .. . 13 3.4. DYNAMIC PHASE DIAGRAM OF
DRIVEN VORTICES . .. . .. .. .. .. .. .. .. 15 3.5. ELECTRONIC STATES OF
VORTEX CORES OF HIGH- T C SUPERCONDUCTOR . 19 4. VORTEX DYNAMICS IN HTSC
THIN FILM . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. 22 4.1.
THERMALLY DEPINNING TRANSITION . .. .. .. .. .. . .. .. .. .. .. .. ..
.. . 23 4.2. ELECTRIC FIELD VS CURRENT DENSITY CHARACTERISTICS . .. ..
.. . .. .. . 26 4.3. SCALING LAWS OF PINNING AND ISO-THERM SCALING OF E
* J . .. .. .. 28 4.4. GEOMETRIC EFFECT .. .. .. .. .. .. .. .. . .. ..
.. .. .. .. .. .. . .. .. .. .. .. . 33 4.5. SUMMARY . .. .. . .. .. ..
.. .. .. .. .. . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. 33 5.
VORTICES IN HIGH- T C GRAIN BOUNDARY JUNCTION . .. .. .. .. .. .. .. ..
. .. .. 34 5.1. DIRECT FLUX DETECTION METHOD .. .. .. .. .. . .. .. ..
.. .. .. .. .. . .. . 34 5.2. MAGNETIC FLUX FROM A SINGLE VORTEX IN
SLOTTED YBCO .. .. .. . 36 5.3. LONG-DISTANCE VORTEX MOTION IN WIDE
GRAIN BOUNDARY JUNCTION .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. ..
.. .. 38 5.4. SUPPRESSION OF LONG-DISTANCE VORTEX MOTION IN GRAIN
BOUNDARY JUNCTIONS .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. 40
5.5. 1/ F BEHAVIOR OF THE FLUX NOISE OF SLOTTED GRAIN BOUNDARY JUNCTIONS
.. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . . 42 VIII CONTENTS
5.6. FLUX NOISE OF DIRECTLY COUPLED SQUID MAGNETOMETERS .. .. .. . 44
REFERENCES . .. . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. ..
.. .. .. .. .. .. . .. .. .. .. 45 OBSERVATION OF VORTICES S. OHSHIMA,
K. TANABE, T. MORISHITA AND M. TONOUCHI . .. .. .. .. .. .. . .. 53 1.
INTRODUCTION .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .
.. .. .. .. .. .. .. .. 53 2. OBSERVATION OF A VORTEX PATTERN AND
MOVEMENT BY THE HIGH-RESOLUTION BITTER METHOD .. .. . .. .. .. .. .. ..
.. .. . .. .. .. .. 56 2.1. EXPERIMENTAL PROCEDURE . .. .. .. .. .. .. .
.. .. .. .. .. .. .. .. . .. .. .. 56 2.2. THE OBSERVATION OF A STATIC
VORTEX DISTRIBUTION .. .. .. .. .. .. . . 57 2.3. THE OBSERVATION OF A
DYNAMIC VORTEX BEHAVIOR . .. .. . .. .. .. .. 62 3. SCANNING SQUID
OBSERVATION .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .
65 3.1. SSM SYSTEM AND OBSERVATION TECHNIQUE .. .. . .. .. .. .. .. ..
.. .. 66 3.2. FLUX EXPULSION IN NARROW HIGH- T C THIN FILM PATTERNS ..
.. .. . 68 3.3. FLUX TRAPPING IN HIGH- T C THIN FILM PATTERNS WITH MOATS
.. .. 70 3.4. FLUX TRAPPING IN HIGH- T C FILMS WITH A BICRYSTAL GRAIN
BOUNDARY .. .. . .. .. .. .. .. .. .. .. . .. .. .. . 74 3.5.
OBSERVATION OF MULTILAYERED ELECTRONIC DEVICES . .. .. .. .. .. . .. .
76 3.6. SUMMARY . .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. 77 4. MAGNETO-OPTICAL IMAGING .. .. . .. .. .. ..
.. .. .. .. . .. .. .. .. .. .. .. .. . .. . 77 4.1. EXPERIMENTAL METHOD
.. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. 78 4.2.
STUDIES OF FLUX DENSITY PROFILES AND CRITICAL STATES . .. .. .. . .. .
84 4.3. DYNAMIC OBSERVATIONS OF MAGNETIC FLUX .. .. .. .. .. .. .. . ..
.. .. 84 4.4. DIFFERENTIAL MAGNETO-OPTICAL TECHNIQUE . .. .. .. .. .. .
.. .. .. .. .. 85 4.5. REAL-TIME OBSERVATIONS OF SINGLE VORTEX . .. ..
.. .. .. .. .. . .. .. . 88 4.6. SUMMARY . .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. 88 5. TERAHERTZ
RADIATION IMAGING .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. ..
.. 89 5.1. THZ RADIATON IMAGING SYSTEM . .. .. . .. .. .. .. .. .. .. ..
. .. .. .. .. 90 5.2. VORTEX PENETRATION DUE TO TRANSPORT SUPERCURRENT .
.. .. .. .. .. 93 5.3. VORTEX ENTRY AT WEAK MAGNETIC FIELD . . .. .. ..
.. .. .. .. .. . .. .. . 94 5.4. VORTEX PENETRATION DUE TO A STRONG
MAGNETIC FIELD .. .. .. . .. . 95 5.5. TEMPERATURE DEPENDENCE OF THE
TRAPPED-VORTEX BEHAVIOR .. . . 96 5.6. SUMMARY . .. .. . .. .. .. .. ..
.. .. .. . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. 99 REFERENCES ..
. .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. ..
.. . .. .. .. .. 100 NEW ASPECT OF VORTEX IN HTSC M. TONOUCHI, G. OYA,
Y. MATSUDA AND K. KUMAGAI . .. .. .. . .. .. .. .. .. 103 1.
INTRODUCTION . .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. 103 2. ELECTROSTATICS AND CHARGE DISTRIBUTION IN
THE VORTEX STATE OF TYPE-II SUPERCONDUCTORS .. . .. .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. .. . .. 104 2.1. ELECTROSTATICS OF THE VORTICES
.. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. . 105 2.2. HALL ANOMALY
AND VORTEX CHARGE . .. .. . .. .. .. .. .. .. .. .. . .. .. 112 2.3.
SUMMARY .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . ..
.. .. .. .. .. 116 3. VORTICES IN INTRINSIC JOSEPHSON JUNCTIONS .. .. ..
.. .. .. .. . .. .. .. .. .. 116 3.1. BASIC MODEL FOR A STACK OF
JOSEPHSON JUNCTIONS . .. .. .. .. .. . . 118 CONTENTS IX 3.2. BASIC
PROPERTIES OF INTRINSIC JOSEPHSON JUNCTIONS . .. .. .. .. .. . 120 3.3.
PROPERTIES OF VORTICES IN INTRINSIC JOSEPHSON JUNCTIONS . .. .. . 122
3.4. BEHAVIOR OF VORTICES IN STACKS OF JOSEPHSON JUNCTIONS .. .. .. .
125 3.5. SUMMARY .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. .. 126 4. OPTICAL CONTROL OF VORTICES .. .. .. .. ..
. .. .. .. .. .. .. .. . .. .. .. .. .. .. . 127 4.1. IDEA FOR OPTICAL
VORTEX GENERATION .. .. .. .. .. .. .. . .. .. .. .. .. . 127 4.2.
EXPERIMENTAL SETUP .. .. . .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. 130 4.3. OPTICAL VORTEX GENERATION WITH OPTICAL PULSES . ..
.. .. .. .. .. . 130 4.4. SINGLE SHOT PULSE OPERATION .. .. .. .. .. .
.. .. .. .. .. .. .. . .. .. .. 133 4.5. SUMMARY .. .. . .. .. .. .. ..
.. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. 135 REFERENCES ..
. .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. ..
.. . .. .. .. .. 136 HIGH- T C SQUIDS K. ENPUKU, S. KURIKI AND S. TANAKA
.. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. . 141 1. INTRODUCTION .
.. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. ..
.. .. .. 141 2. HTSC JUNCTIONS FOR SQUIDS . .. .. .. . .. .. .. .. .. ..
.. .. . .. .. .. .. .. .. 142 2.1. TRANSPORT PROPERTIES . .. . .. .. ..
.. .. .. .. .. . .. .. .. .. .. .. .. . .. .. 142 2.2. NOISE ROUNDING
AND EXCESS CURRENT . .. .. .. .. .. .. .. .. . .. .. .. 145 2.3. 1 /F
NOISE . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. ..
.. .. .. . . 146 2.4. DEPENDENCE OF SQUID PERFORMANCE ON JUNCTION
PARAMETERS 147 2.5. SQUID INDUCTANCE .. .. .. . .. .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. .. . 150 2.6. PICKUP COIL AND COUPLING CIRCUIT ..
.. .. . .. .. .. .. .. .. .. .. . .. . 152 2.7. THERMAL ACTIVATION IN
THE FLUX DAM .. .. . .. .. .. .. .. .. .. .. . . 154 2.8. SWITCH FOR
OPENING AND CLOSING THE PICKUP COIL . .. . .. .. .. .. 157 3. SQUID
CONTROL SYSTEM .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. ..
.. .. . 159 3.1. INPUT EQUIVALENT NOISE . . .. .. .. .. .. .. .. .. . ..
.. .. .. .. .. .. .. . .. 159 3.2. BIAS-REVERSAL SCHEMES . .. .. .. .. .
.. .. .. .. .. .. .. .. . .. .. .. .. .. . 160 3.3. READOUT ELECTRONICS
. .. . .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. 164 4.
NOISE REDUCTION IN HTSC-SQUIDS . .. .. .. .. .. .. . .. .. .. .. .. ..
.. .. . 165 4.1. LOW FREQUENCY NOISES IN HTSC-SQUIDS .. .. .. .. .. . ..
.. .. .. . 166 4.2. DIRECT-COUPLED MAGNETOMETERS .. .. .. . .. .. .. ..
.. .. .. .. . .. .. . 166 4.3. EFFECTS OF SLOTS AND HOLES ON THE
REDUCTION OF LOW FREQUENCY NOISE . .. .. .. . .. .. .. .. .. .. .. .. .
.. .. .. .. .. .. 167 4.4. FLUX PENETRATION .. .. .. .. .. .. . .. .. ..
.. .. .. .. .. . .. .. .. .. .. .. .. 169 4.5. BEHAVIORS OF FLUX DAMS ..
. .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. 171 5. DEVELOPMENT
OF SQUIDS FOR MICROSCOPES . .. .. .. . .. .. .. .. .. .. .. .. . 177
REFERENCES .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . ..
.. .. .. .. .. .. . .. .. .. .. 182 APPLICATIONS OF HTSC SQUIDS H.
ITOZAKI, K. SAKUTA, T. KOBAYASHI, K. ENPUKU, N. KASAI, Y. FUJINAWA, H.
IITAKA, K. NIKAWA AND M. HIDAKA .. .. .. . .. .. .. .. .. .. . 185 1.
INTRODUCTION . .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. 185 2. HTSC-SQUID FOR COMMERCIAL USE . .. . .. ..
.. .. .. .. .. .. . .. .. .. .. .. 187 2.1. SQUID KIT . .. .. .. .. .. .
.. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. . 187 2.2.
ADVANCED SQUID KIT . .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. ..
.. .. 190 X CONTENTS 2.3. COMMERCIALIZATION OF SQUID . .. .. . .. .. ..
.. .. .. .. .. . .. .. .. .. 193 3. CHALLENGE TO SHIELD-LESS HTSC-SQUID
MAGNETOCARDIOGRAPHY .. .. 194 3.1. OPEN-SQIUD MAGNETOCARDIOGRAPHY
EQUIPMENT .. . .. .. .. .. .. 195 3.2. ADAPTIVE NOISE CANCELING PROCESS
. .. .. .. . .. .. .. .. .. .. .. .. . .. 198 3.3. ACTIVE NOISE CONTROL
SYSTEM FOR DC FLUCTUATIONS . .. .. .. .. .. 201 3.4. SUMMARY .. .. . ..
.. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. 204
4. BIOLOGICAL IMMUNOASSAYS .. .. .. .. .. .. . .. .. .. .. .. .. .. .. .
.. .. .. .. .. . 205 4.1. MEASUREMENT PRINCIPLE .. .. .. .. .. .. .. ..
. .. .. .. .. .. .. .. . .. .. .. 205 4.2. MEASUREMENT SYSTEM .. .. ..
.. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. . 206 5. MONITORING
ENVIRONMENTAL MAGNETIC FIELD RELATED TO EARTHQUAKES 214 5.1. ULF
VARIATION AS A PRECURSORY PHENOMENON OF AN EARTHQUAKE . .. .. .. .. ..
.. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. 215 5.2. REQUIREMENTE
ON THE MEASUREMENT SYSTEM OF ULF RADIATION 216 5.3. SQUID SYSTEM FOR ULF
MAGNETIC FIELD MEASUREMENT . .. .. .. 218 5.4. FIELD MEASUREMENT . .. ..
.. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. 220 5.5. FUTURE
PROBLEM .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. ..
.. . 224 6. LASER-SQUID MICROSCOPE FOR LSI CHIP DEFECT ANALYSIS . . ..
.. .. .. . 224 6.1. THE LASER-SQUID SYSTEM .. .. .. .. .. .. . .. .. ..
.. .. .. .. .. . .. .. 225 6.2. PROTOTYPE SYSTEM SETUP . .. .. . .. ..
.. .. .. .. .. .. . .. .. .. .. .. .. . 227 6.3. BASIC DEMONSTRATION
USING 488 NM LASER . .. .. .. .. .. .. .. . .. . 227 6.4. BACKSIDE
FAILURE IDENTIFICATION BEFORE BONDPAD PATTERNING .. 228 6.5. DEFECTIVE
CHIP IDENTIFICATION AFTER BONDING AND PACKAGING . . 230 6.6.
LOCALIZATION FROM WHOLE CHIP AREA TO MICROMETER AREA . .. . 231 6.7.
CONCLUSIONS . .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. ..
.. .. .. .. . . 232 7. SMALL-SCALE HTSC DIGITAL APPLICATIONS .. .. .. .
.. .. .. .. .. .. .. .. . .. . 233 7.1. SAMPLER . .. .. .. .. .. .. . ..
.. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. 234 7.2. ANALOG
TO DIGITAL CONVERTER .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .
240 7.3. SUMMARY .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. .. 244 REFERENCES .. . .. .. .. .. .. .. .. .. . ..
.. .. .. .. .. .. .. . .. .. .. .. .. .. .. . .. .. .. .. 244 MATERIAL
TECHNOLOGY FOR VORTEX ELECTRONICS T. KOBAYASHI, S. ODA, O. MICHIKAMI AND
T. TERASHIMA . .. .. .. .. .. .. . . 249 1. INTRODUCTION . .. .. . .. ..
.. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. 249
2. PULSED LASER DEPOSITION METHOD FOR HTSC AND RELATED OXIDE FILM
FORMATION .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . ..
.. . 250 2.1. ECLIPSE PLD .. .. .. . .. .. .. .. .. .. .. .. . .. .. ..
.. .. .. .. .. . .. .. .. . 251 2.2. AURORA PLD . .. . .. .. .. .. .. ..
.. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. 252 2.3. APPLICATION OF
THE ECLIPSE-AURORA PLD METHOD TO ELECTRONICS DEVICES .. .. .. .. .. ..
.. .. . .. .. .. .. .. .. .. .. . .. .. . 258 2.4. SUMMARY .. .. . .. ..
.. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. 260 3.
MOCVD FOR THIN FILM GROWTH .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. 260 3.1. ATOMIC-LAYER MOCVD SYSTEM . .. .. .. .. .. .. . .. ..
.. .. .. .. .. . 261 3.2. REAL-TIME PROCESS MONITORING .. .. .. .. .. ..
.. .. . .. .. .. .. .. .. . 262 3.3. GA ADDITION TO YBCO THIN FILMS ..
.. .. .. .. .. .. .. . .. .. .. .. . 267 3.4. SUMMARY .. .. . .. .. ..
.. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. 270
CONTENTS XI 4. SPUTTER GROWTH OF HTSC THIN FILMS . .. .. .. .. .. .. ..
. .. .. .. .. .. .. . 270 4.1. FUNDAMENTAL FEATURES OF SPUTTERING . ..
.. .. .. .. .. . .. .. .. .. .. . 270 4.2. SYNTHESIS OF HIGH QUALITY
FILMS AND LARGE SIZED FILM DEPOSITION .. .. .. .. .. .. . .. .. .. .. ..
.. .. .. . .. .. .. .. .. .. .. 271 4.3. EPITAXIAL GROWTH OF EUBA 2 CU 3
O 7 FILMS ON R-PLANE SAPPHIRES . .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. 273 4.4. APPLICATION OF SPUTTER PLASMA TO RECOVERY
TREATMENT . .. .. . 276 4.5. SUMMARY .. .. . .. .. .. .. .. .. .. .. .
.. .. .. .. .. .. .. .. . .. .. .. .. .. .. 278 5. PREPARATION OF
ULTRATHIN FILMS AND SUPERLATTICES OF HIGH- T C OXIDES BY MBE . .. .. ..
.. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. . 279 5.1. MBE GROWTH
OF OXIDE THIN FILMS . .. .. .. .. . .. .. .. .. .. .. .. .. 280 5.2.
RHEED OSCILLATIONS .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. ..
.. .. .. 280 5.3. SUPERCONDUCTIVITY OF ULTRATHIN YBCO FILMS . .. .. ..
.. .. . .. .. 282 5.4. SUPERCONDUCTING TRANSITION OF ULTRATHIN FILMS AND
SUPERLATTICES IN MAGNETIC FIELDS . .. .. .. . .. .. .. .. .. .. .. ..
286 5.5. SUMMARY .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. .. 289 REFERENCES .. . .. .. .. .. .. .. .. .. . ..
.. .. .. .. .. .. .. . .. .. .. .. .. .. .. . .. .. .. .. 289 INDEX .. .
.. .. .. .. .. .. .. .. . .. .. .. .. .. .. .. .. . .. .. .. .. .. .. ..
.. . .. .. .. .. .. 293
|
any_adam_object | 1 |
author2 | Kobayashi, Takeshi 1944- |
author2_role | edt |
author2_variant | t k tk |
author_GND | (DE-588)128607130 |
author_facet | Kobayashi, Takeshi 1944- |
building | Verbundindex |
bvnumber | BV017430853 |
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callnumber-raw | QC611.98.H54 |
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callnumber-subject | QC - Physics |
classification_rvk | UD 9450 |
ctrlnum | (OCoLC)52197576 (DE-599)BVBBV017430853 |
dewey-full | 537.6/23 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 537 - Electricity and electronics |
dewey-raw | 537.6/23 |
dewey-search | 537.6/23 |
dewey-sort | 3537.6 223 |
dewey-tens | 530 - Physics |
discipline | Physik |
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id | DE-604.BV017430853 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:17:56Z |
institution | BVB |
isbn | 3540402314 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-010502706 |
oclc_num | 52197576 |
open_access_boolean | |
owner | DE-384 DE-83 DE-11 DE-188 |
owner_facet | DE-384 DE-83 DE-11 DE-188 |
physical | XI, 302 S. Ill., graph. Darst. |
publishDate | 2003 |
publishDateSearch | 2003 |
publishDateSort | 2003 |
publisher | Springer |
record_format | marc |
series | Topics in applied physics |
series2 | Topics in applied physics Physics and astronomy online library |
spelling | Vortex electronics and SQUIDs Takeshi Kobayashi ... (ed.) Berlin ; Heidelberg ; New York ; Hong Kong ; London ; Milan u.a. Springer 2003 XI, 302 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Topics in applied physics 91 Physics and astronomy online library Literaturangaben Física larpcal Quantentheorie Electrocardiography instrumentation Electromagnetic Phenomena Electronics High temperature superconductors Immunoassay instrumentation Physics Quantum theory Vortex-motion Hochtemperatursupraleiter (DE-588)4220922-5 gnd rswk-swf Quanteninterferometer (DE-588)4047987-0 gnd rswk-swf Flussschlauch (DE-588)4326682-4 gnd rswk-swf Hochtemperatursupraleiter (DE-588)4220922-5 s Flussschlauch (DE-588)4326682-4 s Quanteninterferometer (DE-588)4047987-0 s DE-604 Kobayashi, Takeshi 1944- (DE-588)128607130 edt Erscheint auch als Online-Ausgabe 978-3-540-44876-1 Topics in applied physics 91 (DE-604)BV008007504 91 SWB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010502706&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Vortex electronics and SQUIDs Topics in applied physics Física larpcal Quantentheorie Electrocardiography instrumentation Electromagnetic Phenomena Electronics High temperature superconductors Immunoassay instrumentation Physics Quantum theory Vortex-motion Hochtemperatursupraleiter (DE-588)4220922-5 gnd Quanteninterferometer (DE-588)4047987-0 gnd Flussschlauch (DE-588)4326682-4 gnd |
subject_GND | (DE-588)4220922-5 (DE-588)4047987-0 (DE-588)4326682-4 |
title | Vortex electronics and SQUIDs |
title_auth | Vortex electronics and SQUIDs |
title_exact_search | Vortex electronics and SQUIDs |
title_full | Vortex electronics and SQUIDs Takeshi Kobayashi ... (ed.) |
title_fullStr | Vortex electronics and SQUIDs Takeshi Kobayashi ... (ed.) |
title_full_unstemmed | Vortex electronics and SQUIDs Takeshi Kobayashi ... (ed.) |
title_short | Vortex electronics and SQUIDs |
title_sort | vortex electronics and squids |
topic | Física larpcal Quantentheorie Electrocardiography instrumentation Electromagnetic Phenomena Electronics High temperature superconductors Immunoassay instrumentation Physics Quantum theory Vortex-motion Hochtemperatursupraleiter (DE-588)4220922-5 gnd Quanteninterferometer (DE-588)4047987-0 gnd Flussschlauch (DE-588)4326682-4 gnd |
topic_facet | Física Quantentheorie Electrocardiography instrumentation Electromagnetic Phenomena Electronics High temperature superconductors Immunoassay instrumentation Physics Quantum theory Vortex-motion Hochtemperatursupraleiter Quanteninterferometer Flussschlauch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010502706&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV008007504 |
work_keys_str_mv | AT kobayashitakeshi vortexelectronicsandsquids |