Metrology at the frontiers of physics and technology: = La metrologia ai limiti della fisica e della tecnologia
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Amsterdam u.a.
North-Holland
1992
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Schriftenreihe: | Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi
110 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Parallelt.: La metrologia ai limiti della fisica e della tecnologia |
Beschreibung: | XVIII, 646 S. Ill., graph. Darst. |
ISBN: | 0444897704 |
Internformat
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246 | 1 | 3 | |a La metrologia ai limiti della fisica e della tecnologia |
246 | 1 | 1 | |a La metrologia ai limiti della fisica e della tecnologia |
264 | 1 | |a Amsterdam u.a. |b North-Holland |c 1992 | |
300 | |a XVIII, 646 S. |b Ill., graph. Darst. | ||
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490 | 1 | |a Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi |v 110 | |
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650 | 7 | |a Fisica Geral |2 larpcal | |
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650 | 4 | |a Mesure physique - Erreur | |
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adam_text | ITALIAN PHYSICAL SOCIETY PROCEEDINGS OF THE INTERNATIONAL SCHOOL OF
PHYSICS ENRICO FERMI» COURSE CX EDITED BY L. CROVINI AND T. J. QUINN
DIRECTORS OF THE COURSE S. TERENZO DI LERICI VILLA MARIGOLA 27 JUNE - 7
JULY 1989 METROLOGY AT THE FRONTIERS OF PHYSICS AND TECHNOLOGY 1992
NORTH-HOLLAND AMSTERDAM - OXFORD - NEW YORK - TOKYO INDICE L. CROVINI
AND T. J. QUINN - FOREWORD PAG. XVN GRUPPO FOTOGRAIICO DEI PARTECIPANTI
AL CORSO FUORI TESTO A. BRAY - THE EVOLUTION OF METROLOGY DURING THE
LAST DECADE. INTRO- DUCTION TO THE COURSE METROLOGY AT THE FRONTIERS OF
PHYSICS AND TECHNOLOGY». 1. GENERAL CONSIDERATIONS PAG. 1 2. THE
STANDARD OF THE UNIT OF MASS » 2 3. THE STANDARD OF THE UNIT OF LENGTH »
4 4. THE STANDARD OF THE UNIT OF TEMPERATURE » 6 5. THE STANDARDS OF
ELECTRIC-CURRENT INTENSITY, TENSION AND RESISTANCE » 8 6. CONCLUSIONS »
9 7. PROPOSAL » 9 E. R. COHEN - UNCERTAINTY AND ERROR IN PHYSICAL
MEASUREMENTS. 1. INTRODUCTION » 11 2. SOURCES OF ERROR » 12 3.
CHARACTERIZATION OF ERROR » 15 3 1. EXPECTATION, MEAN AND VARIANCE » 15
4. COMBINING ERROR DISTRIBUTIONS » 19 4 1. CORRELATION AND INDEPENDENCE
» 19 4 2. COMBINING ERRORS; CONVOLUTION OF DISTRIBUTIONS » 20 4 3.
CAUCHY DISTRIBUTION » 22 5. CHARACTERIZATION OF BIAS » 23 5 1. BIAS
DISTRIBUTIONS » 23 6. UNIFICATION OF RANDOM AND BIAS ERRORS » 27 6 1.
CONFIDENCE INTERVALS AND STUDENT S» DISTRIBUTION » 28 6 2. EXPRESSION
OF OVERALL UNCERTAINTY » 29 V VI INDICE B. W. PETLEY - THE CONTINUING
EVOLUTION IN THE DEFINITIONS AND REAL- IZATIONS OF THE SI UNITS OF
MEASUREMENT. 1. INTRODUCTION PAG. 33 2. UNIT SYSTEMS AND NATURAL UNITS»
» 36 3. THE SYSTEME INTERNATIONAL D UNITES » 39 4. OUR CHANGING UNIT
SYSTEM » 43 4 1. LENGTH AND TIME » 44 4 2. THE AMPERE AND KILOGRAM » 47
4 3. THE CANDELA AND THE MOLE » 51 4 4. THERMODYNAMIC TEMPERATURE » 53
5. QUANTUM STANDARDS » 54 5 1. THE JOSEPHSON EFFECTS AND THE VOLT » 55
5 2. THE QUANTIZED HALL RESISTANCE AND THE OHM » 55 5 3. THE FUNDAMENTAL
PHYSICAL CONSTANTS AND THE SI UNITS » 57 6. CONCLUSION » 59 R. N.
FAUSTOV - QUANTUM ELECTRODYNAMICS AND FUNDAMENTAL CONSTANTS. 1.
INTRODUCTION » 63 2. MUONIUM HYPERFINE SPLITTING » 64 3. HYPERFINE
SPLITTING IN MUONIC HELIUM ATOM » 65 4. MUONIUM LAMB SHIFT » 66 5.
POSITRONIUM HYPERFINE SPLITTING » 66 6. POSITRONIUM AND HYDROGEN FINE
STRUCTURE » 66 7. POSITRONIUM DECAY RATE » 68 8. ANOMALOUS MAGNETIC
MOMENT OF THE ELECTRON » 68 9. FINE-STRUCTURE CONSTANT » 69 10. RYDBERG
CONSTANT » 70 A. COOK - EXPERIMENTS ON GRAVITATION. PART I. - THE
INVERSE SQUARE LAW » 73 LI. INTRODUCTION » 73 1.2. EXPERIMENTAL PROBLEMS
» 75 1.3. THE INVERSE SQUARE LAW*THE EXPERIMENTAL PROBLEM » 76 1.4. THE
EXPERIMENT OF LONG » 77 1.5. THE EXPERIMENT OF SPERO AND OTHERS » 79
1.6. THE EXPERIMENT OF CHEN, COOK AND METHERELL » 80 1.7. CONCLUSION »
82 PART IL - THE WEAK PRINCIPLE OF EQUIVALENCE » 83 IL 1. INTRODUCTION »
83 11.2. DIRECT EXPERIMENTS » 84 11.3. SOLAR EXPERIMENTS » 85 11.4. THE
EXPERIMENT OF ROLL, KROTKOV AND DICKE » 87 11.5. THE EXPERIMENT OF
BRAGINSKI AND PANOV » 89 11.6. TERRESTRIAL EXPERIMENTS » 90 11.7.
CONCLUSION » 94 INDICE VII A. COOK - METROLOGY AND THE LOGICAL STRUCTURE
OF PHYSICS. 1. INTRODUCTION PAG. 99 2. QUANTUM MECHANICS » 99 3. SPECIAL
RELATIVITY » 102 4. MICROSCOPIC PHYSICS » 107 5. GENERAL RELATIVITY »
108 6. METROLOGY AND THE NATURE OF THE PHYSICAL WORLD » 110 7.
CONCLUSION » 110 G. PIZZELLA - DETECTORS OF GRAVITATIONAL WAVES. 1.
GRAVITATIONAL WAVES » 113 2. MOTION OF TEST BODIES IN A G.W. FIELD » 114
3. MEASUREMENTS OF DISTANCES IN GR. DETECTABILITY OF THE G.W » 115 4.
ENERGY CARRIED BY G.W » 118 5. GRAVITATIONAL-WAVE SOURCES » 120 5 1.
SPINNING STAR » 121 5 2. DOUBLE-STAR SYSTEMS » 122 5 3. FALL INTO
SCHWARZSCHILD BLACK HOLE » 122 5 4. RADIATION FROM GRAVITATIONAL
COLLAPSE » 122 6. G.W. DETECTORS » 123 6 1. THE NONRESONANT DETECTORS »
123 6 2. THE RESONANT DETECTORS » 124 7. ELECTROMECHANICAL TRANSDUCERS »
126 T 1. PIEZOELECTRIC CERAMIC » 126 7 2. THE CAPACITOR » 127 8. THE
RESONANT CAPACITIVE TRANSDUCER » 128 8 1. GENERAL DESCRIPTION » 128
8 2. THE VIBRATION MODE OF THE TRANSDUCER » 130 8 3. COUPLING TO THE
ANTENNA » 130 8 4. ELECTRICAL TUNING » 132 8 5. MERIT FACTOR Q OF THE
TRANSDUCER » 133 8 6. THE COUPLING PARAMETER SS » 133 9. DATA ANALYSIS »
134 9 1. THE BROWNIAN NOISE » 134 9 2. THE BACK-ACTION » 135 9 3. THE
WIDE-BAND NOISE, DATA ANALYSIS AND OPTIMIZATION » 137 10. THE
CROSS-SECTION AND THE EFFECTIVE TEMPERATURE » 139 11. BRIEF REVIEW OF
THE G.W. EXPERIMENTS » 140 11 1. THE LASER INTERFEROMETERS » 140 11 2.
THE RESONANT DETECTORS » 141 C. C. SPEAKE - EXPERIMENTS ON THE FIFTH
FORCE». 1. INTRODUCTION » 145 2. COMPOSITION-INDEPENDENT TESTS » 148 2
1. BACKGROUND THEORY » 148 2 2. THE EXPERIMENTS » 152 3.
COMPOSITION-DEPENDENT TESTS » 157 4. CONCLUSION » 164 VIII INDICE T. J.
QUINN - RECENT ADVANCES IN MASS STANDARDS AND WEIGHING AND PERSPECTIVES
FOR A NEW DEFINITION OF THE KILOGRAM. 1. INTRODUCTION PAG. 169 2. THE
KILOGRAM, THE UNIT OF MASS » 174 3. THE INTERNATIONAL PROTOTYPE OF THE
KILOGRAM AND ITS COPIES » 176 4. MODERN MANUFACTURING AND ADJUSTING OF
PT-IR 1 KG MASS STANDARDS » 177 5. THE EFFECT OF CLEANING PT-IR MASS
STANDARDS » 180 6. BALANCES AND WEIGHING » 182 6 1. NOISE SOURCES IN
WEIGHING » 195 6 2. THERMAL NOISE WHOSE ORIGIN LIES IN DISSIPATIVE
PROCESSES » 198 6 3. NONTHERMAL MECHANICAL NOISE DUE TO EXTERNAL EFFECTS
» 198 6 3.1. VERTICAL GROUND VIBRATION » 198 6 3.2. GROUND TILT , » 198
6 3.3. HORIZONTAL GROUND VIBRATIONS » 199 6 4. DETECTOR NOISE IN THE
DISPLACEMENT TRANSDUCER » 204 6 5. NOISE RESULTING FROM NONREPRODUCIBLE
POSITIONING OF MASSES ON THE PAN » 205 6 6. NOISE DUE TO TEMPERATURE
VARIATIONS AND NONUNIFORMITIES OF TEM- PERATURE IN THE BALANCE CASE »
205 7. PERSPECTIVES FOR A NEW DEFINITION OF THE KILOGRAM » 206 E. BRAUN
- THE QUANTUM HALL EFFECT. 1. BASIC EXPERIMENTS » 211 1 1. HISTORICAL
RETROSPECTIVE » 211 1 2. THE DISCOVERY OF THE QUANTUM HALL EFFECT » 214
1 3. THE OCCURRENCE OF QUANTIZED RESISTANCE VALUES » 218 1 4. THE IMPACT
OF THE DISCOVERY OF THE QUANTUM HALL EFFECT ON METROL- OGY IN SUMMER
1980 » 222 1*5. THE QUANTUM HALL EFFECT IN HETEROSTRUCTURES » 229 1 6.
THE FRACTIONAL QUANTUM HALL EFFECT » 230 1 7. LOWER QUANTIZED RESISTANCE
VALUES » 231 1 8. NARROW CONSTRICTIONS IN A 2 DEG » 231 2. PRECISION
MEASUREMENTS OF QUANTIZED HALL RESISTANCES » 232 2 1. GENERAL ASPECTS »
232 2 2. EXPERIMENTAL METHODS » 233 2 3. EXPERIMENTAL METHODS AND
RESULTS AT THE PTB » 236 2 3.1. DETERMINATION OF THE VON KLITZING
CONSTANT » 236 23.1.1. COMPARISONOF# H (2)WITHSS 12 » 236 2 3.1.2.
MEASUREMENTS USING A CRYOGENIC CURRENT COM- PARATORBRIDGE(CCCB) » 238
2 3.1.3. MEASUREMENTS USING A JOSEPHSON POTENTIOME- TER » 239 2 3.1.4.
CALIBRATION OF THE 10 KQ STANDARD RESISTOR » 240 2 3.1.5. FINALRESULT »
240 2 3.1.6. COMPARISON OFTHIS RESULT WITH OTHER ONES » 241 2 3.2. OTHER
EXPERIMENTAL RESULTS » 242 2 3.2.1. REPRODUCIBILITY » 242 2 3.2.2.
TEMPERATURE DEPENDENCE » 243 IX 2 3.2.3. DEPENDENCE ON DIFFERENT SAMPLES
AND DIFFERENT STEP NUMBERS PAG. 244 2 3.2.4. DEPENDENCE ON SAMPLE
CURRENT » 244 2 3.3. SUMMARY OF EXPERIMENTAL RESULTS » 245 3.
METROLOGICAL APPLICATIONS OF THE QUANTUM HALL EFFECT » 245 3*1.
DETERMINATION OF THE FINE-STRUCTURE CONSTANT » 245 3 2. OBSERVATIONS OF
DRIFT RATES OF RESISTANCES » 248 3 3. MONITORING THE LEGAL RESISTANCE
UNITS » 249 3 4. DETERMINATION OF THE SI OHM » 249 3 5. DETERMINATION OF
THE AVOGADRO CONSTANT VIA THE FARADAY CON- STANT » 249 3 6.
INTERNATIONAL AGREEMENT TO OBTAIN UNIFORMITY AMONG THE AS-MAIN- TAINED
UNITS » 250 3 6.1. PRESENT PROCEDURE OF THE MAINTENANCE AND
DISSEMINATION OF THE UNIT OF RESISTANCE AT THE NATIONAL INSTITUTES » 251
3 6.2. THE RECOMMENDATION OF THE CIPM WITH RESPECT TO THE REP-
RESENTATION OF THE OHM » 252 3 7. PRESENT SITUATION OF THE VON KLITZING
CONSTANT AND FUTURE AS- PECTS » 254 R. L. KAUTZ - DESIGN AND OPERATION
OF SERIES-ARRAY JOSEPHSON VOLT- AGE STANDARDS. 1. INTRODUCTION » 259 2.
PHASE LOCKING AND CHAOS » 264 2 1. JUNCTION MODEL » 264 2 2. VOLTAGE
WAS » 267 2 3. CURRENT BIAS » 267 2 4. CHAOS » 270 3. JUNCTION DESIGN »
273 3 1. CRITICAL-CURRENT DENSITY » 274 3 2. LENGTH » 276 3 3. WIDTH »
279 3 4. MICROWAVE FREQUENCY AND JUNCTION MATERIALS » 282 4. ARRAY
DESIGN » 283 4 1. IDEAL STRIPLINE » 284 4 2. MICROWAVE POWER » 286 4 3.
ATTENUATION » 286 5. CRYOPROBE DESIGN » 288 6. SYSTEM DESIGN AND
OPERATION » 289 7. ACCURACY AND PRECISION » 292 L. CROVINI - THE
DEVELOPMENT OF THE INTERNATIONAL TEMPERATURE SCALE OF 1990. 1.
INTRODUCTION AND HISTORY OF THE INTERNATIONAL TEMPERATURE SCALE » 297 2.
WHY AN INTERNATIONAL TEMPERATURE SCALE? » 300 3. PITFALLSOFTHEIPT-68 »
302 4. THERMODYNAMIC TEMPERATURE MEASUREMENTS » 304 4 1.
EANGEFROM0.65KTO5K » 305 X INDICE 4 2. EANGE5KTO273K PAG. 306 4 3. EANGE
(273 -S-1337) K » 307 4 4. DIFFERENCES BETWEEN THE ITS-90 AND THE
IPTS-68 » 309 5. THE STRUCTURE OF THE INTERNATIONAL TEMPERATURE SCALE OF
1990 » 309 5 1. VAPOUR PRESSURE SCALES » 310 5 2. CONSTANT-VOLUME
INTERPOLATING GAS THERMOMETER » 311 5 3. THE PLATINUM RESISTANCE
THERMOMETER SCALE » 311 6. DEVELOPMENTS OF FIXED-POINT APPARATUS » 315
7. SPECTRAL-RADIATION SCALE » 322 8. ACCURACYOF THE ITS-90 » 322
APPENDIX A » 323 APPENDIX B » 324 K. GROHMANN - THE METROLOGY OF
TEMPERATURE BELOW 1 K. 1. INTRODUCTION » 329 L L. DEFINITION OF THE
ABSOLUTE TEMPERATURE » 329 12. THERMOMETER TYPES » 329 1 3. TIME
CONSTANTS » 330 2. PRIMARY THERMOMETERS » 331 2 1. NOISE THERMOMETER »
331 2 2. NUCLEAR ORIENTATION THERMOMETER » 335 3. SECONDARY THERMOMETERS
OF THE FIRST KIND » 338 3 1. VAPOUR PRESSURE THERMOMETER » 338 3 2.
PARAMAGNETIC THERMOMETER » 340 3 3. 3 HE MELTING CURVE THERMOMETER » 344
3 4. NUCLEAR-MAGNETIC-RESONANCE (NMR) THERMOMETER » 347 3 4.1.
GYROMAGNETIC DESCRIPTION OF NMR » 348 3 4.2. QUANTUM-MECHANICAL
DESCRIPTION OF NMR » 349 3 4.3. CONTINUOUS-WAVE (CW) NMR » 350 3 - 4.4.
PULSED NMR » 352 3 4.5. LONGITUDINAL SQUID NMR » 353 4. SECONDARY
THERMOMETER OF SECOND KIND » 353 4 1. RESISTANCE THERMOMETERS » 353 4 2.
SUPERCONDUCTING FIXED-POINT DEVICES » 356 J. E. MARTIN - CRYOGENIC
RADIOMETRY. 1. INTRODUCTION » 361 2. PRINCIPLE OF ELECTRICAL
SUBSTITUTION RADIOMETERS » 363 2 1. THE ABSORPTIVITY OF THE CAVITY » 364
2 2. THE ELECTRICAL POWER » 367 2 3. THE HEAT FLOW PATH » 368 2 4. THE
TEMPERATURE SENSOR » 370 2 5. THE REFERENCE TEMPERATURE HEAT SINK » 371
2 6. RADIATION SHIELDING » 372 3. THERMAL BEHAVIOUR OF THE WHOLE SYSTEM
» 373 4. THE NPL TOTAL-RADIATION THERMOMETER » 377 4 1. DESCRIPTION OF
THE APPARATUS » 378 XI 4 2. METHOD FOR MEASURING T AND O- PAG. 380 4 3.
RESULTS » 381 5. THE NPL CRYOGENIC RADIOMETER FOR OPTICAL RADIATION
MEASUREMENTS.... » 386 5 1. DESCRIPTION OF THE RADIOMETER » 386 5 2.
PROCEDURE FOR THE CALIBRATION OF TRANSFER STANDARDS » 388 5 3.
DISCUSSION » 389 6. THE INTERCOMPARISON OF THE TWO RADIOMETERS » 390
6 1. METHOD OF THE COMPARISON » 390 6 2. RESULTS » 392 7.
INTERCOMPARISON BETWEEN A CRYOGENIC RADIOMETER AND THE ELECTRON STOR-
AGERINGBESSY » 395 7*1. METHOD OF THE COMPARISON » 396 7 2. RESULTS »
397 8. THE NPL RADIOMETRIC REALIZATION OF THE CANDELA » 398 9. OTHER
CRYOGENIC RADIOMETERS » 399 10. FUTURE DEVELOPMENTS USING CRYOGENIC
RADIOMETERS » 399 10 1. THE ESTABLISHMENT OF A NEW DETECTOR-BASED
SPECTRAL-IRRADIANCE (POWER) SCALE » 400 10 2. THE RADIOMETRIC
DETERMINATION OF THE GOLD POINT » 400 10 3. INTERCOMPARISON OF THE WORLD
RADIOMETRIC REFERENCE AND THE CRYOGENIC RADIOMETER » 401 CH. SALOMON -
LASER COOLING OF ATOMS AND ION TRAPPING FOR FREQUENCY STANDARDS. PART I.
- THE RADIATION PRESSURE » 405 1. GENERAL INTRODUCTION » 405 1 1.
HISTORICAL OVERVIEW » 405 1 2. PHYSICAL PICTURE » 407 1 3. EXPRESSION OF
THE RADIATION PRESSURE FORCE: S/ » 408 1 4. PROPERTIESOF &[ » 408 1 -
4.1 » 408 L - 4.2 » 408 1 4.3 » 408 1 5. ORDERS OF MAGNITUDE » 409 2.
APPLICATION TO ATOMIC-BEAM SLOWING » 409 21. PRINCIPLE » 409 2 2. THE
DOPPLER EFFECT » 410 2 3. COMPENSATION OF THE DOPPLER EFFECT BY ZEEMAN
EFFECT » 410 2 4. COMPENSATION OF DOPPLER EFFECT BY LASER FREQUENCY
CHIRPING » 412 2 5. COMPARISON BETWEEN THE TWO METHODS » 414 3. LASER
COOLING OF NEUTRAL ATOMS. TWO-LEVEL ATOM THEORY » 415 3 1. PRINCIPLE »
415 3 2. EXPRESSION OF THE COOLING FORCE » 416 3 3. NUMERICAL EXAMPLE »
417 3 4. ATOMIC-MOMENTUM DIFFUSION » 418 3 4.1. PHYSICAL PICTURE » 418
3 4.2. MORE DETAILED CALCULATION » 419 3 5. KINETIC-ENERGY EVOLUTION »
420 3 6. EQUILIBRIUM TEMPERATURE OF LASER-COOLED ATOMS » 420 XII INDICE
3*7. DISCUSSION PAG. 421 3 8. SUMMARY OF LASER-COOLING VELOCITIES AND
ASSUMPTIONS » 421 PART IL - LASER INTENSITY EFFECTS: THE GOOD SURPRISE
OF 1988 » 422 1 1. MOLASSES EXPERIMENTS » 422 1*1.1. DESCRIPTION OF A
MOLASSES» EXPERIMENT » 422 1 1.2. VELOCITY MEASUREMENTS » 424 1 2.
VIOLATION OF THE DOPPLER COOLING THEORY » 425 1*3. TENTATIVE
EXPLANATION: THE POLARIZATION GRADIENT FORCE » 427 1*3.1. EXISTENCE OF
POLARIZATION GRADIENTS » 427 1*3.2. MULTILEVEL STRUCTURE OF THE ATOMS
AND THE ROLE OF THE LASER INTENSITY » 427 1 3.3. THE EFFECT OF LONG
PUMPING TIMES » 428 1*3.4. THE POLARIZATION GRADIENT FORCE IN A 1D
MOLASSES: A SPECIFIC EXAMPLE » 429 1*3.4.1. THE LIGHT POLARIZATION » 429
1*3.4.2. THE ATOMIC LEVELS FOR AN ATOM AT REST » 431 1*3.4.3. THE ATOMIC
POPULATIONS FOR AN ATOM AT REST » 431 1*3.4.4. MOVING ATOM: THE SISYPHUS
EFFECT » 432 1*3.4.5. THE FRICTION FORCE » 434 1*3.4.6. THE MOMENTUM
DIFFUSION » 434 1*4. CHANNELLING ATOMS IN A LASER STANDING WAVE » 436
1*5. CONCLUSION » 437 PART III. - LASER-COOLED AND TRAPPED IONS FOR
FREQUENCY STANDARDS » 440 1* 1. INTRODUCTION » 440 1*2. TRAPPING CHARGED
PARTICLES » 440 1*2.1. PENNING TRAP » 442 1*2.2. PAUL TRAP » 443 2.
LASER COOLING OF BOUND PARTICLES » 445 2 1. PHYSICAL PICTURE » 445 2*2.
OUTLINE OF THE QUANTUM TREATMENT » 447 2 3. RECENT DEMONSTRATION ON A
SINGLE 198 HG + AT NIST (BOULDER) » 450 CONCLUSION » 455 Y. S. DOMNIN -
LASER FREQUENCY STABILIZATION AND MEASUREMENT. INTRODUCTION » 457 1.
LASER MULTIPLICATION CHAIN » 458 1*1. SCHEME OF FREQUENCY SYNTHESIS UP
TO 10 14 HZ » 458 1*2. MICROWAVE EQUIPMENT REQUIREMENTS » 460 1*3.
COMMON CHARACTERISTICS AND FEATURES OF THE ELECTRONIC EQUIP- MENT » 461
1*4. NONLINEAR ELEMENTS AND THEIR CHARACTERISTICS » 462 1*5.
MULTIPLICATION CHAIN LASERS » 465 2. PHASE SYNCHRONIZATION OF LASERS »
467 3. THE MULTIPLICATION CHAIN FREQUENCY STANDARDS » 476 3*1. C0 2 /OS0
4 LASER » 476 3*2. PORTABLE HE-NE/CH 4 LASER » 478 XIII 3 3.
OPTOGALVANIC EFFECT: THE HE-HE/CH 4 LASER PAG. 479 3 4. METHANE E-LINE
STABILIZED LASER » 480 4. METROLOGICAL TESTING AND MEASUREMENTS » 481
4 1. TESTING » 481 4 2. FREQUENCY MEASUREMENTS » 484 5. M101 LASER
COMPARISONS » 490 6. SOME RESULTS OF THE ANALYSIS » 494 7. CONCLUSION »
495 S. LESCHIUTTA - TIME SCALES. 1. AN INTRODUCTION TO TIME SCALES » 497
2. INTERNATIONAL ORGANIZATIONS INTERESTED IN TIME SCALES » 498 3.
GENERAL PROPERTIES OF TIME SCALES » 499 4. TIME SCALES » 501 4 1.
ASTRONOMICAL TIME SCALES » 501 4 2. DYNAMICAL TIME SCALES » 502 4 3.
ATOMIC TIME SCALES » 503 4 4. COORDINATED UNIVERSAL TIME » 504 4 5.
TECHNICAL TIME SCALES AND CALENDARS » 505 4 6. DECIMAL TIME SCALES » 505
4 7. OTHER CONCEPTS, DEFINITIONS AND CONVENTIONS » 505 5. SCIENTIFIC
TIME SCALES » 506 6. USES OF TIME SCALES IN TECHNOLOGY » 507 6 1.
NAVIGATION » 508 6 2. TELECOMMUNICATIONS » 508 S. LESCHIUTTA - ATOMIC
TIME SCALES. 1. INTRODUCTION » 511 2. ATOMIC CLOCKS » 512 2 1.
CONSTITUENTS OF AN ATOMIC CLOCK » 513 2 2. LIFE AND PROBLEMS OF THE
ATOMIC CLOCKS » 516 3. FORMATION OF A LOCAL TIME SCALE » 517 3 1. TO
VISIT OR NOT TO VISIT THE CLOCKS » 518 3 2. EOOMS, SHIELDS, TEMPERATURE
CONTROL, NUMBER OF CLOCKS » 518 3 3. ACCURACY VS. STABILITY » 519 3 4.
SELECTION OF THE CLOCKS AND WEIGHTING» » 519 3 5. ACCURACY OF A TIME
SCALE » 520 3 6. TOFILTERORNOTTOFILTER » 520 3 7. INTRODUCTION OR
REMOVAL OF A CLOCK » 520 4. TIME TRANSFER METHODS » 521 4 1. USE OF
NAVIGATION SIGNALS EMITTED FROM GROUND » 522 4 2. USE OF SPACEBORNE
NAVIGATION SYSTEMS » 522 4 3. USE OF COMMUNICATION GEOSTATIONARY
SATELLITES » 523 4 4. OTHER METHODS » 523 5. FORMATION OF TAI, TEMPS
ATOMIQUE INTERNATIONALE » 524 5 1. DEFINITIONS AND RELATIVITY
IMPLICATIONS » 524 5 2. CLOCKS USED IN THE FORMATION OF TAI » 525 5 3.
TAI ALGORITHMS » 525 6. EESULTS, PENDING PROBLEMS AND FUTURE AREAS OF
RESEARCH » 526 XIV INDICE F. MLGNARD - METROLOGICAL ASPECTS OF
FUNDAMENTAL ASTRONOMY. FOREWORD PAG. 529 1. INTRODUCTION » 529 2.
ANGULAR MEASUREMENTS. THE HIPPARCOS MISSION » 531 2 1. PRESENTATION »
531 2 2. THE HIPPARCOS MISSION: AN OVERVIEW » 532 2 3. HIPPARCOS:
INSTRUMENT AND DETECTORS » 533 . 2 4. THE INPUT CATALOGUE » 535 2 5. THE
OBSERVING STRATEGY » 535 2 6. THE SCANNING LAW » 537 2 - 7. THE
HIPPARCOS SIGNAL » 538 2 8. GENERAL DATA PROCESSING » 542 2 8.1.
REDUCTION ON THE CIRCLES » 543 2 8.2. SPHERE RESTITUTION AND
ASTROMETRIC-PARAMETER SOLUTION... » 544 2 9. LINK TO THE INERTIAL SYSTEM
» 546 2 10. CONCLUSION » 549 3. PULSAR TIMING » 549 3 1. PULSARS: AN
OVERVIEW » 549 3 2. MAIN CHARACTERISTICS OF PULSARS » 550 3 3. PULSARS
SLOW DOWN » 551 3 4. EVOLUTION OF PULSARS » 553 3 5. MILLISECOND PULSARS
» 554 3 6. PULSE TIMING OBSERVATIONS » 557 3 7. RELATIVISTIC EFFECTS IN
THE ARRIVAL TIME » 559 3 8. PHOTON PROPAGATION » 563 3 9. CAN PULSARS BE
USED AS TIME STANDARDS? » 565 3 10. THEBINARYPULSARPSR 1913 + 16 » 566
3 10.1. THE DISCOVERY » 566 3 10.2. TIMING AND ORBITAL PARAMETERS »
566 3 10.3. THE ORBIT DECAY » 569 3 11. SUMMARY FOR THE BINARY PULSAR »
570 4. THE ASTRONOMICAL SYSTEM OF UNITS » 570 4 1. WHY DO WE NEED A
SYSTEM OF ASTRONOMICAL CONSTANTS? » 571 4 2. THE UAI76 SYSTEM OF
CONSTANTS » 572 4 3. GENERAL COMMENTS » 572 4 4. THE FUTURE OF THE
ASTRONOMICAL SYSTEMS OF CONSTANTS » 577 K. CARNEIRO, L. LITHEN MADSEN
AND L. NIELSEN - METROLOGY APPLI- CATIONS OF STM, AFM AND X-RAY
INTERFEROMETRY. 1. INTRODUCTION » 583 2. THE SCANNING TUNNELLING
MICROSCOPE, STM » 583 2 1. WORKINGPRINCIPLESOFTHESTM » 584 2 1.1.
QUANTUM-MECHANICAL TUNNELLING » 584 2 1.2. MAKING THE PRINCIPLE WORK »
585 2 2. APPLICATIONS » 587 2 2.1. CHARACTERIZATION OF METAL SURFACES »
587 2 2.1.1. SMOOTH» SURFACES » 589 2 2.1.2. ROUGH» SURFACES » 589
2 2.1.3. SOLVING THE KILOGRAM S WEIGHT PROBLEM? » 590 INDICE XV 22.2.
ATOMS AT SURFACES PAG. 592 2 2.3. OTHER APPLICATIONS » 593 3. THE
ATOMIC-FORCE MICROSCOPE, AFM » 593 3 1. WORKING PRINCIPLE OF THE AFM »
594 3 2. APPLICATIONS » 595 4. X-RAY INTERFEROMETRY FROM SINGLE CRYSTALS
OF SILICON » 595 4 1. WORKING PRINCIPLE » 595 4 2. APPLICATIONS » 598
4 2.1. AVOGADRO S CONSTANT » 598 4 2.2. A NEW MASS STANDARD » 599 4 2.3.
REFERENCE STANDARDS FOR X-RAY WAVELENGTHS » 599 5. SUMMARY » 601 P. A.
MCKEOWN - HIGH-PRECISION MANUFACTURING IN AN ADVANCED IN- DUSTRIAL
ECONOMY. FOREWORD » 605 1. INTRODUCTION » 606 2. MANUFACTURING
ENGINEERING » 606 2 1. THE TWO MAIN THRUSTS » 606 2 2. PRECISION
ENGINEERING » 607 2 3. THE SCALE OFTHINGS » 609 2 4. ACHIEVABLE
MACHINING» ACCURACY » 609 2 5. PROCESSES » 611 2 6. SINGLE-POINT
DIAMOND TURNING » 612 2 7. GRINDING » 614 2 8. FREE ABRASIVE PROCESSES »
616 2 9. PHOTO-ETCHING » 617 2 10. ENERGY BEAM PROCESSES » 617 3.
PRECISION COMPONENTS ARID SUBSYSTEMS IMPORTANT FOR ADVANCED-TECHNOL- OGY
PRODUCTS » 619 3 1. THE ADVANCED TURBO-PROPELLER ENGINE » 619 32.
COMPUTERS AND PERIPHERALS » 625 3 2.1. MASS STORAGE, DIRECT-ACCESS DATA
STORAGE AND RETRIEVAL DISC SYSTEMS » 626 3 2.2. MAGNETIC-DISC SYSTEMS »
626 3 2.3. OPTICAL DISCS » 630 3 2.4. MINIATURE ASPHERIC LENS MOULDS »
631 4. THE DESIGN AND MANUFACTURE OF HIGH-PRECISION PRODUCTION MACHINES
.... » 631 4 1. MULTIAXIS CONTROL BY THE ELECTRONIC GEARBOX PRINCIPLE »
632 4 2. DETERMINISTIC PERFORMANCE AND ERROR COMPENSATION » 633 4 3.
HIGH-PRECISION GRINDING OF ADVANCED CERAMICS » 637 4 4. AN
ULTRA-PRECISION CNC DIAMOND GRINDING MACHINE FOR THE HIGH- PRECISION
GRINDING OF CERAMIC COMPONENTS » 640
|
any_adam_object | 1 |
building | Verbundindex |
bvnumber | BV007711714 |
callnumber-first | Q - Science |
callnumber-label | QC39 |
callnumber-raw | QC39 |
callnumber-search | QC39 |
callnumber-sort | QC 239 |
callnumber-subject | QC - Physics |
classification_rvk | UD 4615 |
ctrlnum | (OCoLC)26263730 (DE-599)BVBBV007711714 |
dewey-full | 530.8 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 530 - Physics |
dewey-raw | 530.8 |
dewey-search | 530.8 |
dewey-sort | 3530.8 |
dewey-tens | 530 - Physics |
discipline | Physik |
format | Book |
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genre | (DE-588)1071861417 Konferenzschrift 1989 Lerici gnd-content |
genre_facet | Konferenzschrift 1989 Lerici |
id | DE-604.BV007711714 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:08:09Z |
institution | BVB |
institution_GND | (DE-588)1011890-1 |
isbn | 0444897704 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-005065772 |
oclc_num | 26263730 |
open_access_boolean | |
owner | DE-355 DE-BY-UBR DE-12 DE-384 DE-83 |
owner_facet | DE-355 DE-BY-UBR DE-12 DE-384 DE-83 |
physical | XVIII, 646 S. Ill., graph. Darst. |
publishDate | 1992 |
publishDateSearch | 1992 |
publishDateSort | 1992 |
publisher | North-Holland |
record_format | marc |
series | Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi |
series2 | Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi |
spelling | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia ed by L. Crovini ... La metrologia ai limiti della fisica e della tecnologia Amsterdam u.a. North-Holland 1992 XVIII, 646 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi 110 Parallelt.: La metrologia ai limiti della fisica e della tecnologia Fisica Geral larpcal Mesure - Congrès Mesure physique - Erreur Mesures physiques - Congrès Mesures physiques - Congrès ram Métrologie Measurement Congresses Physical measurements Congresses Messtechnik (DE-588)4114575-6 gnd rswk-swf Physik (DE-588)4045956-1 gnd rswk-swf Metrologie (DE-588)4169749-2 gnd rswk-swf (DE-588)1071861417 Konferenzschrift 1989 Lerici gnd-content Messtechnik (DE-588)4114575-6 s Physik (DE-588)4045956-1 s DE-604 Metrologie (DE-588)4169749-2 s Crovini, L. Sonstige oth Società italiana di fisica Sonstige (DE-588)1011890-1 oth Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi 110 (DE-604)BV000002984 110 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005065772&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia Scuola Internazionale di Fisica Enrico Fermi: Rendiconti della Scuola Internazionale di Fisica Enrico Fermi Fisica Geral larpcal Mesure - Congrès Mesure physique - Erreur Mesures physiques - Congrès Mesures physiques - Congrès ram Métrologie Measurement Congresses Physical measurements Congresses Messtechnik (DE-588)4114575-6 gnd Physik (DE-588)4045956-1 gnd Metrologie (DE-588)4169749-2 gnd |
subject_GND | (DE-588)4114575-6 (DE-588)4045956-1 (DE-588)4169749-2 (DE-588)1071861417 |
title | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia |
title_alt | La metrologia ai limiti della fisica e della tecnologia |
title_auth | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia |
title_exact_search | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia |
title_full | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia ed by L. Crovini ... |
title_fullStr | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia ed by L. Crovini ... |
title_full_unstemmed | Metrology at the frontiers of physics and technology = La metrologia ai limiti della fisica e della tecnologia ed by L. Crovini ... |
title_short | Metrology at the frontiers of physics and technology |
title_sort | metrology at the frontiers of physics and technology la metrologia ai limiti della fisica e della tecnologia |
title_sub | = La metrologia ai limiti della fisica e della tecnologia |
topic | Fisica Geral larpcal Mesure - Congrès Mesure physique - Erreur Mesures physiques - Congrès Mesures physiques - Congrès ram Métrologie Measurement Congresses Physical measurements Congresses Messtechnik (DE-588)4114575-6 gnd Physik (DE-588)4045956-1 gnd Metrologie (DE-588)4169749-2 gnd |
topic_facet | Fisica Geral Mesure - Congrès Mesure physique - Erreur Mesures physiques - Congrès Métrologie Measurement Congresses Physical measurements Congresses Messtechnik Physik Metrologie Konferenzschrift 1989 Lerici |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005065772&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000002984 |
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