Particle detection with drift chambers: with 44 tables
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin
Springer
1994
|
Ausgabe: | 2. print. |
Schriftenreihe: | Accelerator physics
Springer study edition |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturangaben |
Beschreibung: | XV, 348 S. graph. Darst. |
ISBN: | 354058322X 038758322X |
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100 | 1 | |a Blum, Walter |d 1937-2013 |e Verfasser |0 (DE-588)143945424 |4 aut | |
245 | 1 | 0 | |a Particle detection with drift chambers |b with 44 tables |c W. Blum ; L. Rolandi |
250 | |a 2. print. | ||
264 | 1 | |a Berlin |b Springer |c 1994 | |
300 | |a XV, 348 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Accelerator physics | |
490 | 0 | |a Springer study edition | |
500 | |a Literaturangaben | ||
650 | 0 | 7 | |a Driftkammer |0 (DE-588)4229157-4 |2 gnd |9 rswk-swf |
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700 | 1 | |a Rolandi, Luigi |d 1953- |e Verfasser |0 (DE-588)113439849 |4 aut | |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006543257&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
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Datensatz im Suchindex
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adam_text |
CONTENTS
1.
GAS
IONIZATION
BY
CHARGED
PARTICLES
AND
BY
LASER
RAYS
.
1
1.1
GAS
IONIZATION
BY
FAST
CHARGED
PARTICLES
.
1
1.1.1
IONIZING
COLLISIONS
.
1
1.1.2
DIFFERENT
IONIZATION
MECHANISMS
.
3
1.1.3
AVERAGE
ENERGY
REQUIRED
TO
PRODUCE
ONE
ION
PAIR
.
5
1.1.4
THE
RANGE
OF
PRIMARY
ELECTRONS
.
7
1.1.5
THE
DIFFERENTIAL
CROSS-SECTION
D R/DE
.
7
1.2
CALCULATION
OF
ENERGY
LOSS
.
9
1.2.1
FORCE
ON
A
CHARGE
TRAVELLING
THROUGH
A
POLARIZABLE
MEDIUM
.
9
1.2.2
THE
PHOTO-ABSORPTION
IONIZATION
MODEL
.
.
11
1.2.3
BEHAVIOUR
FOR
LARGE
E
.
14
1.2.4
CLUSTER-SIZE
DISTRIBUTION
.
15
1.2.5
IONIZATION
DISTRIBUTION
ON
A
GIVEN
TRACK
LENGTH
.
17
1.2.6
VELOCITY
DEPENDENCE
OF
THE
ENERGY
LOSS
.
.
25
1.2.7
THE
BETHE-BLOCH
FORMULA
.
30
1.2.8
ENERGY
DEPOSITED
ON
A
TRACK
-
RESTRICTED
ENERGY
LOSS
.
33
1.2.9
LOCALIZATION
OF
CHARGE
ALONG
THE
TRACK.
.
.
36
1.2.10
A
MEASUREMENT
OF
N
EFF
.
37
1.3
GAS
IONIZATION
BY
LASER
RAYS
.
38
1.3.1
THE
NTH
ORDER
CROSS-SECTION
EQUIVALENT
.
.
39
1.3.2
RATE
EQUATIONS
FOR
TWO-PHOTON
IONIZATION.
40
1.3.3
DEPENDENCE
OF
LASER
IONIZATION
ON
WAVELENGTH
.
43
1.3.4
LASER-BEAM
OPTICS
.
44
REFERENCES
.
47
2.
THE
DRIFT
OF
ELECTRONS
AND
IONS
IN
GASES
.
50
2.1
AN
EQUATION
OF
MOTION
WITH
FRICTION
.
50
2.1.1
CASE
OF
E
NEARLY
PARALLEL
TO
B
.
52
2.1.2
CASE
OF
E
ORTHOGONAL
TO
B
.
53
2.2
THE
MICROSCOPIC
PICTURE
.
54
2.2.1
DRIFT
OF
ELECTRONS
.
54
X
CONTENTS
2.2.2
DRIFT
OF
IONS
.
57
2.2.3
INCLUSION
OF
MAGNETIC
FIELD
.
65
2.2.4
DIFFUSION
.
69
2.2.5
ELECTRIC
ANISOTROPY
.
72
2.2.6
MAGNETIC
ANISOTROPY
.
74
2.2.7
ELECTRON
ATTACHMENT
.
77
2.3
RESULTS
FROM
THE
COMPLETE
MICROSCOPIC
THEORY
.
.
81
2.3.1
DISTRIBUTION
FUNCTION
OF VELOCITIES
.
81
2.3.2
DRIFT
.
83
2.3.3
INCLUSION
OF
MAGNETIC
FIELD
.
83
2.3.4
DIFFUSION
.
85
2.4
APPLICATIONS
.
85
2.4.1
DETERMINATION
OF
A(E)
AND
Z(S)
FROM
DRIFT
MEASUREMENT
.
85
2.4.2
EXAMPLE:
ARGON-METHANE
MIXTURE
.
87
2.4.3
EXPERIMENTAL
CHECK
OF
THE
UNIVERSAL
DRIFT
VELOCITY
FOR
LARGE
COR
.
88
2.4.4
A
MEASUREMENT
OF
TRACK
DISPLACEMENT
AS
A
FUNCTION
OF
MAGNETIC
FIELD
.
91
2.4.5
A
MEASUREMENT
OF
THE
MAGNETIC
ANISOTROPY
OF
DIFFUSION
.
91
2.4.6
CALCULATED
AND
MEASURED
ELECTRON
DRIFT
VELOCITIES
IN
CROSSED
ELECTRIC
AND
MAGNETIC
FIELDS
.
95
REFERENCES
.
97
3.
ELECTROSTATICS
OF
WIRE
GRIDS
AND
FIELD
CAGES
.
99
3.1
WIRE
GRIDS
.
100
3.1.1
THE
ELECTRIC
FIELD
OF
AN
IDEAL
GRID
OF
WIRES
PARALLEL
TO
A
CONDUCTING
PLANE.
.
.
100
3.1.2
SUPERPOSITION
OF
THE
ELECTRIC
FIELDS
OF
SEVERAL
GRIDS
AND
OF
A
HIGH-VOLTAGE
PLANE
.
103
3.1.3
MATCHING
THE
POTENTIAL
OF
THE
ZERO
GRID
AND
OF
THE
ELECTRODES
OF
THE
FIELD
CAGE
.
.
.
106
3.2
AN
ION
GATE
IN
THE
DRIFT
SPACE
.
108
3.2.1
CALCULATION
OF
TRANSPARENCY
.
108
3.2.2
SETTING
THE
GATING
GRID
POTENTIAL
WITH
RESPECT
TO
THE
ZERO-GRID
POTENTIAL.
.
.
113
3.3
FIELD
CAGES
.
113
3.3.1
THE
DIFFICULTY
OF
FREE
DIELECTRIC
SURFACES
.
.
114
3.3.2
IRREGULARITIES
IN
THE
FIELD
CAGE
.
116
3.4
WIRE
DISPLACEMENTS
DUE
TO
GRAVITATIONAL
AND
ELECTROSTATIC
FORCES
.
119
3.4.1
GRAVITATIONAL
FORCE
.
120
CONTENTS
XI
3.4.2
ELECTROSTATIC
FORCES
.
121
REFERENCES
.
122
4.
AMPLIFICATION
OF
IONIZATION
.
124
4.1
THE
PROPORTIONAL
WIRE
.
124
4.2
BEYOND
THE
PROPORTIONAL
MODE
.
127
4.3
LATERAL
EXTENT
OF
THE
AVALANCHE
.
129
4.4
AMPLIFICATION
FACTOR
(GAIN)
OF
THE
PROPORTIONAL
WIRE
.
131
4.4.1
THE
DIETHORN
FORMULA
.
133
4.4.2
DEPENDENCE
OF
THE
GAIN
ON
THE
GAS
DENSITY
.
135
4.4.3
MEASUREMENT
OF
THE
GAIN
VARIATION
WITH
SENSE-WIRE
VOLTAGE
AND
GAS
PRESSURE
.
136
4.5
LOCAL
VARIATIONS
OF
THE
GAIN
.
137
4.5.1
VARIATION
OF
THE
GAIN
NEAR
THE
EDGE
OF
THE
CHAMBER
.
138
4.5.2
LOCAL
VARIATION
OF
THE
GAIN
OWING
TO
MECHANICAL
IMPERFECTIONS
.
138
4.5.3
SPACE
CHARGE
NEAR
THE
WIRE
.
141
4.6
STATISTICAL
FLUCTUATION
OF
THE
GAIN
.
143
4.6.1
DISTRIBUTIONS
OF
AVALANCHES
STARTED
BY
SINGLE
ELECTRONS
(THEORY)
.
144
4.6.2
DISTRIBUTIONS
OF
AVALANCHES
STARTED
BY
SINGLE
ELECTRONS
(MEASUREMENTS)
.
148
4.6.3
THE
EFFECT
OF
AVALANCHE
FLUCTUATIONS
ON
THE
WIRE
PULSE
HEIGHTS
.
149
4.6.4
A
MEASUREMENT
OF
AVALANCHE
FLUCTUATIONS
USING
LASER
TRACKS
.
151
REFERENCES
.
152
5.
CREATION
OF
THE
SIGNAL
.
155
5.1
SIGNAL
GENERATION
ON
THE
WIRE
.
155
5.2
SIGNAL
GENERATION
ON
CATHODE
STRIPS
.
158
5.2.1
PAD
RESPONSE
FUNCTION
.
159
5.2.2
PRINCIPLE
OF
THE
MEASUREMENT
OF
THE
COORDINATE
ALONG
THE
WIRE
DIRECTION
USING
CATHODE
STRIPS
.
163
5.3
RAMO
'
S
THEOREM
.
164
REFERENCES
.
166
6.
COORDINATE
MEASUREMENT
AND
FUNDAMENTAL
LIMITS
OF
ACCURACY
.
167
6.1
METHODS
OF
COORDINATE
MEASUREMENT
.
167
XII
CONTENTS
6.2
BASIC
FORMULAE
FOR
A
SINGLE
WIRE
.
169
6.2.1
FREQUENCY
DISTRIBUTION
OF
THE
COORDINATES
OF
A
SINGLE
ELECTRON
AT
THE
ENTRANCE
TO
THE
WIRE
REGION
.
170
6.2.2
FREQUENCY
DISTRIBUTION
OF
THE
ARRIVAL
TIME
OF
A
SINGLE
ELECTRON
AT
THE
ENTRANCE
TO
THE
WIRE
REGION
.
172
6.2.3
INFLUENCE
OF
THE
CLUSTER
FLUCTUATIONS
ON
THE
RESOLUTION
-
THE
EFFECTIVE
NUMBER
OF
ELECTRONS
.
173
6.3
ACCURACY
IN
THE
MEASUREMENT
OF
THE
COORDINATE
IN
OR
NEAR
THE
WIRE
DIRECTION
.
177
6.3.1
INCLUSION
OF
A
MAGNETIC
FIELD
PERPENDICULAR
TO
THE
WIRE
DIRECTION:
THE
WIRE
EX
B
EFFECT
177
6.3.2
CASE
STUDY
OF
THE
EXPLICIT
DEPENDENCE
OF
THE
RESOLUTION
ON
L
AND
0
.
179
6.3.3
THE
GENERAL
SITUATION
-
CONTRIBUTIONS
OF
SEVERAL
WIRES,
AND
THE
ANGULAR
PAD
EFFECT
.
179
6.3.4
CONSEQUENCES
OF
(6.34)
FOR
THE
CONSTRUCTION
OFTPCS
.
184
6.3.5
A
MEASUREMENT
OF
THE
ANGULAR
VARIATION
OF
THE
ACCURACY
.
184
6.4
ACCURACY
IN
THE
MEASUREMENT
OF
THE
COORDINATE
IN
THE
DRIFT
DIRECTION
.
186
6.4.1
INCLUSION
OF
A
MAGNETIC
FIELD
PARALLEL
TO
THE
WIRE
DIRECTION:
THE
DRIFT
EX
B
EFFECT
187
6.4.2
AVERAGE
ARRIVAL
TIME
OF
MANY
ELECTRONS
.
.
188
6.4.3
ARRIVAL
TIME
OF
THE
MTH
ELECTRON
.
189
6.4.4
VARIANCE
OF
THE
ARRIVAL
TIME
OF
THE
MTH
ELECTRON:
CONTRIBUTION
OF
THE
DRIFT-PATH
VARIATIONS
.
190
6.4.5
VARIANCE
OF
THE
ARRIVAL
TIME
OF
THE
MTH
ELECTRON:
CONTRIBUTION
OF
THE
DIFFUSION
.
191
APPENDIX.
INFLUENCE
OF
THE
CLUSTER
FLUCTUATIONS
ON
THE
MEASUREMENT
ACCURACY
OF
A
SINGLE
WIRE
.
.
194
REFERENCES
.
200
7.
GEOMETRICAL
TRACK
PARAMETERS
AND
THEIR
ERRORS
.
201
7.1
LINEAR
FIT
.
202
7.1.1
CASE
OF EQUAL
SPACING
BETWEEN
X
0
AND
X
N
.
203
7.2
QUADRATIC
FIT
.
204
7.2.1
ERROR
CALCULATION
.
205
7.2.2
ORIGIN
AT
THE
CENTRE
OF
THE
TRACK
-
UNIFORM
SPACING
OF
WIRES
.
206
CONTENTS
XIII
7.2.3
SAGITTA
.
207
7.2.4
COVARIANCE
MATRIX
AT
AN
ARBITRARY
POINT
ALONG
THE
TRACK
.
208
7.2.5
COMPARISON
BETWEEN
THE
LINEAR
AND
QUADRATIC
FITS
IN
SPECIAL
CASES
.
209
7.2.6
OPTIMAL
SPACING
OF
WIRES
.
211
7.3
A
CHAMBER
AND
ONE
ADDITIONAL
MEASURING
POINT
OUTSIDE
.
212
7.3.1
COMPARISON
OF
THE
ACCURACY
IN
THE
CURVATURE
MEASUREMENT
.
213
7.3.2
EXTRAPOLATION
TO
A
VERTEX
.
214
7.4
LIMITATIONS
DUE
TO
MULTIPLE
SCATTERING
.
216
7.4.1
BASIC
FORMULAE
.
216
7.4.2
VERTEX
DETERMINATION
.
219
7.4.3
RESOLUTION
OF
CURVATURE
FOR
TRACKS
THROUGH
A
SCATTERING
MEDIUM
.
220
7.5
SPECTROMETER
RESOLUTION
.
221
7.5.1
LIMIT
OF
MEASUREMENT
ERRORS
.
221
7.5.2
LIMIT
OF
MULTIPLE
SCATTERING
.
222
REFERENCES
.
223
8.
ION
GATES
.
224
8.1
REASONS
FOR
THE
USE
OF
ION
GATES
.
224
8.1.1
ELECTRIC
CHARGE
IN
THE
DRIFT
REGION
.
224
8.1.2
AGEING
.
227
8.2
SURVEY
OF
FIELD
CONFIGURATIONS
AND
TRIGGER
MODES
.
227
8.2.1
THREE
FIELD
CONFIGURATIONS
.
227
8.2.2
THREE
TRIGGER
MODES
.
229
8.3
TRANSPARENCY
UNDER
VARIOUS
OPERATING
CONDITIONS
229
8.3.1
TRANSPARENCY
OF
THE
STATIC
BIPOLAR
GATE.
.
.
230
8.3.2
AVERAGE
TRANSPARENCY
OF THE
REGULARLY
PULSED
BIPOLAR
GATE
.
232
8.3.3
TRANSPARENCY
OF
THE
STATIC
BIPOLAR
GATE
IN
A
TRANSVERSE
MAGNETIC
FIELD
.
235
REFERENCES
.
238
9.
PARTICLE
IDENTIFICATION
BY
MEASUREMENT
OF
IONIZATION
.
.
.
240
9.1
PRINCIPLES
.
240
9.2
SHAPE
OF THE
IONIZATION
CURVE
.
244
9.3
STATISTICAL
TREATMENT
OF
N
IONIZATION
SAMPLES
OF
ONE
TRACK
.
246
9.4
ACCURACY
OF THE
IONIZATION
MEASUREMENT
.
248
9.4.1
VARIATION
WITH
N
AND
X
.
248
XIV
CONTENTS
9.4.2
VARIATION
WITH
THE
PARTICLE
VELOCITY
.
249
9.4.3
VARIATION
WITH
THE
GAS
.
250
9.5
PARTICLE
SEPARATION
.
253
9.6
CLUSTER
COUNTING
.
255
9.7
IONIZATION
MEASUREMENT
IN
PRACTICE
.
256
9.7.1
TRACK-INDEPENDENT
CORRECTIONS
.
257
9.7.2
TRACK-DEPENDENT
CORRECTIONS
.
257
9.8
PERFORMANCE
ACHIEVED
IN
EXISTING
DETECTORS
.
259
9.8.1
WIRE
CHAMBERS
SPECIALIZED
TO
MEASURE
TRACK
IONIZATION
.
259
9.8.2
IONIZATION
MEASUREMENT
IN
UNIVERSAL
DETECTORS
.
264
REFERENCES
.
268
10.
EXISTING
DRIFT
CHAMBERS
-
AN
OVERVIEW.
270
10.1
DEFINITION
OF THREE
GEOMETRICAL
TYPES
OF
DRIFT
CHAMBERS
.
270
10.2
HISTORICAL
DRIFT
CHAMBERS
.
271
10.3
DRIFT
CHAMBERS
FOR
FIXED-TARGET
AND
COLLIDER
EXPERIMENTS
.
274
10.3.1
GENERAL
CONSIDERATIONS
CONCERNING
THE
DIRECTIONS
OF
WIRES
AND
MAGNETIC
FIELDS
.
275
10.3.2
THE
DILEMMA
OF
THE
LORENTZ
ANGLE
.
276
10.3.3
LEFT-RIGHT
AMBIGUITY
.
277
10.4
PLANAR
DRIFT
CHAMBERS
OF
TYPE
1
.
278
10.4.1
COORDINATE
MEASUREMENT
IN
THE
WIRE
DIRECTION
.
278
10.4.2
FIVE
REPRESENTATIVE
CHAMBERS
.
278
10.4.3
TYPE
1
CHAMBERS
WITHOUT
FIELD-SHAPING
ELECTRODES
.
285
10.5
LARGE
CYLINDRICAL
DRIFT
CHAMBERS
OF
TYPE
2.
.
.
.
287
10.5.1
COORDINATE
MEASUREMENT
ALONG
THE
AXIS
-
STEREO
CHAMBERS
.
287
10.5.2
FIVE
REPRESENTATIVVE
CHAMBERS
WITH
(APPROXIMATELY)
AXIAL
WIRES
.
287
10.5.3
DRIFT
CELLS
.
288
10.5.4
THE
UA1
CENTRAL
DRIFT
CHAMBER
.
294
10.6
SMALL
CYLINDRICAL
DRIFT
CHAMBERS
OF
TYPE
2
FOR
COLLIDERS
(VERTEX
CHAMBERS)
.
296
10.6.1
SIX
REPRESENTATIVE
CHAMBERS
.
297
10.7
DRIFT
CHAMBERS
OF
TYPE
3
.
304
10.7.1
DOUBLE-TRACK
RESOLUTION
IN
TPCS
.
305
10.7.2
FIVE
REPRESENTATIVE
TPCS
.
305
CONTENTS
XV
10.7.3
A
TYPE
3
CHAMBER
WITH
A
RADIAL
DRIFT
FIELD
.
310
10.7.4
A
TPC
FOR
HEAVY-ION
EXPERIMENTS
.
310
10.7.5
A
TYPE
3
CHAMBER
AS
EXTERNAL
PARTICLE
IDENTIFIER
.
311
10.7.6
A
TPC
FOR
MUON-DECAY
MEASUREMENTS
.
313
10.8
CHAMBERS
WITH
EXTREME
ACCURACY
.
314
REFERENCES
.
316
11.
DRIFT-CHAMBER
GASES
.
320
11.1
GENERAL
CONSIDERATIONS
CONCERNING
THE
CHOICE
OF
DRIFT-CHAMBER
GASES
.
320
11.2
INFLAMMABLE
GAS
MIXTURES
.
321
11.3
GAS
PURITY,
AND
SOME
PRACTICAL
MEASUREMENTS
OF
ELECTRON
ATTACHMENT
.
326
11.3.1
THREE-BODY
ATTACHMENT
TO
O
2
,
MEDIATED
BY
CH
4
,
I-C
4
H
10
AND
H
2
O
.
326
11.3.2
'
POISONING
'
OF
THE
GAS
BY
CONSTRUCTION
MATERIALS
.
328
11.3.3
THE
EFFECT
OF
MINOR
H
2
O
CONTAMINATION
ON
THE
DRIFT
VELOCITY
.
330
11.4
CHEMICAL
COMPOUNDS
USED
FOR
LASER
IONIZATION
.
331
11.5
CHOICE
OF
THE
GAS
PRESSURE
.
333
11.5.1
POINT-MEASURING
ACCURACY
.
333
11.5.2
LORENTZ
ANGLE
.
335
11.5.3
DRIFT-FIELD
DISTORTIONS
FROM
SPACE
CHARGE
.
335
11.6
DETERIORATION
OF
CHAMBER
PERFORMANCE
WITH
USAGE
(
'
AGEING
'
)
.
336
11.6.1
GENERAL
OBSERVATIONS
IN
PARTICLE
EXPERIMENTS
.
336
11.6.2
DARK
CURRENTS
.
338
11.6.3
AGEING
TESTS
.
340
REFERENCES
.
342
SUBJECT
INDEX
.
345 |
any_adam_object | 1 |
author | Blum, Walter 1937-2013 Rolandi, Luigi 1953- |
author_GND | (DE-588)143945424 (DE-588)113439849 |
author_facet | Blum, Walter 1937-2013 Rolandi, Luigi 1953- |
author_role | aut aut |
author_sort | Blum, Walter 1937-2013 |
author_variant | w b wb l r lr |
building | Verbundindex |
bvnumber | BV009878730 |
classification_rvk | UN 7210 |
ctrlnum | (OCoLC)177289501 (DE-599)BVBBV009878730 |
dewey-full | 539.7/72 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 539 - Modern physics |
dewey-raw | 539.7/72 |
dewey-search | 539.7/72 |
dewey-sort | 3539.7 272 |
dewey-tens | 530 - Physics |
discipline | Physik |
edition | 2. print. |
format | Book |
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id | DE-604.BV009878730 |
illustrated | Illustrated |
indexdate | 2024-08-14T01:23:21Z |
institution | BVB |
isbn | 354058322X 038758322X |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-006543257 |
oclc_num | 177289501 |
open_access_boolean | |
owner | DE-19 DE-BY-UBM DE-29T DE-11 DE-188 |
owner_facet | DE-19 DE-BY-UBM DE-29T DE-11 DE-188 |
physical | XV, 348 S. graph. Darst. |
publishDate | 1994 |
publishDateSearch | 1994 |
publishDateSort | 1994 |
publisher | Springer |
record_format | marc |
series2 | Accelerator physics Springer study edition |
spelling | Blum, Walter 1937-2013 Verfasser (DE-588)143945424 aut Particle detection with drift chambers with 44 tables W. Blum ; L. Rolandi 2. print. Berlin Springer 1994 XV, 348 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Accelerator physics Springer study edition Literaturangaben Driftkammer (DE-588)4229157-4 gnd rswk-swf Teilchendetektor (DE-588)4124298-1 gnd rswk-swf Teilchendetektor (DE-588)4124298-1 s Driftkammer (DE-588)4229157-4 s 1\p DE-604 Rolandi, Luigi 1953- Verfasser (DE-588)113439849 aut DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006543257&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Blum, Walter 1937-2013 Rolandi, Luigi 1953- Particle detection with drift chambers with 44 tables Driftkammer (DE-588)4229157-4 gnd Teilchendetektor (DE-588)4124298-1 gnd |
subject_GND | (DE-588)4229157-4 (DE-588)4124298-1 |
title | Particle detection with drift chambers with 44 tables |
title_auth | Particle detection with drift chambers with 44 tables |
title_exact_search | Particle detection with drift chambers with 44 tables |
title_full | Particle detection with drift chambers with 44 tables W. Blum ; L. Rolandi |
title_fullStr | Particle detection with drift chambers with 44 tables W. Blum ; L. Rolandi |
title_full_unstemmed | Particle detection with drift chambers with 44 tables W. Blum ; L. Rolandi |
title_short | Particle detection with drift chambers |
title_sort | particle detection with drift chambers with 44 tables |
title_sub | with 44 tables |
topic | Driftkammer (DE-588)4229157-4 gnd Teilchendetektor (DE-588)4124298-1 gnd |
topic_facet | Driftkammer Teilchendetektor |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006543257&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT blumwalter particledetectionwithdriftchamberswith44tables AT rolandiluigi particledetectionwithdriftchamberswith44tables |