Understanding cryptography: from established symmetric and asymmetric ciphers to post-quantum algorithms
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Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin
Springer Berlin
2024
|
Ausgabe: | 2nd edition 2024 |
Schlagworte: | |
Online-Zugang: | Inhaltstext Auszug Inhaltsverzeichnis |
Beschreibung: | xxi, 543 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm |
ISBN: | 9783662690062 3662690063 |
Internformat
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100 | 1 | |a Paar, Christof |d 1963- |e Verfasser |0 (DE-588)1032727705 |4 aut | |
245 | 1 | 0 | |a Understanding cryptography |b from established symmetric and asymmetric ciphers to post-quantum algorithms |c Christof Paar, Jan Pelzl, Tim Güneysu |
250 | |a 2nd edition 2024 | ||
263 | |a 202406 | ||
264 | 1 | |a Berlin |b Springer Berlin |c 2024 | |
300 | |a xxi, 543 Seiten |b Illustrationen, Diagramme |c 23.5 cm x 15.5 cm | ||
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653 | |a Cryptography | ||
653 | |a Applied cryptography | ||
653 | |a Data security | ||
653 | |a AES | ||
653 | |a PKC | ||
653 | |a PKI | ||
653 | |a DES | ||
653 | |a PQC | ||
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700 | 1 | |a Pelzl, Jan |d 1975- |e Verfasser |0 (DE-588)132800780 |4 aut | |
700 | 1 | |a Güneysu, Tim |d 1979- |e Verfasser |0 (DE-588)138355630 |4 aut | |
710 | 2 | |a Springer-Verlag GmbH |0 (DE-588)1065168780 |4 pbl | |
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Datensatz im Suchindex
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adam_text |
1
INTRODUCTION
TO
CRYPTOGRAPHY
AND
DATA
SECURITY
.
1
1.1
OVERVIEW
OF
CRYPTOLOGY
(AND
THIS
BOOK)
.
2
1.2
SYMMETRIC
CRYPTOGRAPHY
.
5
1.2.1
BASICS
.
5
1.2.2
SIMPLE
SYMMETRIC
ENCRYPTION:
THE
SUBSTITUTION
CIPHER
.
7
1.3
CRYPTANALYSIS
.
10
1.3.1
GENERAL
THOUGHTS
ON
BREAKING
CRYPTOSYSTEMS
.
10
1.3.2
HOW
MANY
KEY
BITS
ARE
ENOUGH?
.
13
1.4
MODULAR
ARITHMETIC
AND
MORE
HISTORICAL
CIPHERS
.
15
1.4.1
MODULAR
ARITHMETIC
.
15
1.4.2
INTEGERRINGS
.
18
1.4.3
SHIFT
CIPHER
(OR
CAESAR
CIPHER)
.
20
1.4.4
AFFINECIPHER
.
21
1.5
DISCUSSION
AND
FURTHER
READING
.
23
1.6
LESSONS
LEARNED
.
27
PROBLEMS
.
28
2
STREAM
CIPHERS
.
37
2.1
INTRODUCTION
.
38
2.1.1
STREAM
CIPHERS
VS.
BLOCK
CIPHERS
.
38
2.1.2
ENCRYPTION
AND
DECRYPTION
WITH
STREAM
CIPHERS
.
40
2.2
RANDOM
NUMBERS
AND
AN
UNBREAKABLE
STREAM
CIPHER
.
43
2.2.1
RANDOM
NUMBER
GENERATORS
.
43
2.2.2
THE
ONE-TIME
PAD
.
44
2.2.3
TOWARDS
PRACTICAL
STREAM
CIPHERS
.
46
2.3
SHIFT
REGISTER-BASED
STREAM
CIPHERS
.
49
2.3.1
LINEAR
FEEDBACK
SHIFT
REGISTERS
(LFSRS)
.
50
2.3.2
KNOWN-PLAINTEXT
ATTACK
AGAINST
SINGLE
LFSRS
.
53
2.4
PRACTICAL
STREAM
CIPHERS
.
55
2.4.1
SALSA20
.
55
2.4.2
CHACHA
.
59
2.4.3
TRIVIUM
.
61
2.5
DISCUSSION
AND
FURTHER
READING
.
64
2.6
LESSONS
LEARNED
.
67
PROBLEMS
.
68
3
THE
DATA
ENCRYPTION
STANDARD
(DES)
AND
ALTERNATIVES
.
73
3.1
INTRODUCTION
TO
DES
.
74
3.1.1
CONFUSION
AND
DIFFUSION
.
75
3.2
OVERVIEW
OF
THE
DES
ALGORITHM
.
76
3.3
INTERNAL
STRUCTURE
OF
DES
.
79
3.3.1
INITIAL
AND
FINAL
PERMUTATION
.
80
3.3.2
THE
F
FUNCTION
.
81
3.3.3
KEY
SCHEDULE
.
86
3.4
DECRYPTION
.
88
3.5
SECURITY
OF
DES
.
92
3.5.1
EXHAUSTIVE
KEY
SEARCH
.
93
3.5.2
ANALYTICAL
ATTACKS
.
95
3.6
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
96
3.7
DES
ALTERNATIVES
.
97
3.7.1
THE
ADVANCED
ENCRYPTION
STANDARD
(AES)
AND
THE
AES
FINALIST
CIPHERS
.
97
3.7.2
TRIPLE
DES
(3DES)
AND
DESX
.
98
3.7.3
LIGHTWEIGHT
CIPHER
PRESENT
.
99
3.8
DISCUSSION
AND
FURTHER
READING
.
103
3.9
LESSONS
LEARNED
.
105
PROBLEMS
.
106
4
THE
ADVANCED
ENCRYPTION
STANDARD
(AES)
.
111
4.1
INTRODUCTION
.
112
4.2
OVERVIEW
OF
THE
AES
ALGORITHM
.
113
4.3
SOME
MATHEMATICS:
A
BRIEF
INTRODUCTION
TO
GALOIS
FIELDS
.
114
4.3.1
EXISTENCE
OF
FINITE
FIELDS
.
116
4.3.2
PRIME
FIELDS
.
117
4.3.3
EXTENSION
FIELDS
GF(2
M
)
.
119
4.3.4
ADDITION
AND
SUBTRACTION
IN
GF(2M)
.
120
4.3.5
MULTIPLICATION
IN
GF
(2
M
)
.
120
4.3.6
INVERSION
IN
GF(2
M
)
.
123
4.4
INTERNAL
STRUCTURE
OF
AES
.
124
4.4.1
BYTE
SUBSTITUTION
LAYER
.
125
4.4.2
DIFFUSION
LAYER
.
128
4.4.3
KEY
ADDITION
LAYER
.
130
4.4.4
KEYSCHEDULE
.
131
4.5
DECRYPTION
.
135
4.6
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
140
4.7
DISCUSSION
AND
FURTHER
READING
.
141
4.8
LESSONS
LEARNED
.
142
PROBLEMS
.
143
5
MORE
ABOUT
BLOCK
CIPHERS
.
147
5.1
MODES
OF
OPERATION
FOR
ENCRYPTION
AND
AUTHENTICATION
.
148
5.1.1
ELECTRONIC
CODEBOOK
MODE
(ECB)
.
149
5.1.2
CIPHER
BLOCK
CHAINING
MODE
(CBC)
AND
INITIALIZATION
VECTORS
.
153
5.1.3
OUTPUT
FEEDBACK
MODE
(OFB)
.
155
5.1.4
CIPHER
FEEDBACK
MODE
(CFB)
.
156
5.1.5
COUNTER
MODE
(CTR)
.
157
5.1.6
XTS-AES
.
159
5.2
EXHAUSTIVE
KEY
SEARCH
REVISITED
.
161
5.3
INCREASING
THE
SECURITY
OF
BLOCK
CIPHERS
.
162
5.3.1
DOUBLE
ENCRYPTION
AND
MEET-IN-THE-MIDDLE
ATTACK
.
163
5.3.2
TRIPLE
ENCRYPTION
.
165
5.3.3
KEYWHITENING
.
167
5.4
DISCUSSION
AND
FURTHER
READING
.
168
5.5
LESSONS
LEARNED
.
170
PROBLEMS
.
171
6
INTRODUCTION
TO
PUBLIC-KEY
CRYPTOGRAPHY
.
177
6.1
SYMMETRIC
VS.
ASYMMETRIC
CRYPTOGRAPHY
.
178
6.2
PRACTICAL
ASPECTS
OF
PUBLIC-KEY
CRYPTOGRAPHY
.
182
6.2.1
SECURITY
MECHANISMS
.
183
6.2.2
THE
REMAINING
PROBLEM:
AUTHENTICITY
OF
PUBLIC
KEYS
.
184
6.2.3
IMPORTANT
PUBLIC-KEY
ALGORITHMS
.
184
6.2.4
KEY
LENGTHS
AND
SECURITY
LEVELS
.
185
6.3
ESSENTIAL
NUMBER
THEORY
FOR
PUBLIC-KEY
ALGORITHMS
.
186
6.3.1
EUCLIDEAN
ALGORITHM
.
187
6.3.2
EXTENDED
EUCLIDEAN
ALGORITHM
.
189
6.3.3
EULER
'
S
PHI
FUNCTION
.
195
6.3.4
FERMAT
'
S
LITTLE
THEOREM
AND
EULER
'
S
THEOREM
.
197
6.4
DISCUSSION
AND
FURTHER
READING
.
199
6.5
LESSONS
LEARNED
.
200
PROBLEMS
.
201
7
THE
RSA
CRYPTOSYSTEM
.
205
7.1
INTRODUCTION
.
206
7.2
ENCRYPTION
AND
DECRYPTION
.
206
7.3
KEY
GENERATION
AND
PROOF
OF
CORRECTNESS
.
207
7.4
ENCRYPTION
AND
DECRYPTION:
FAST
EXPONENTIATION
.
211
7.5
SPEED-UP
TECHNIQUES
FOR
RSA
.
215
7.5.1
FAST
ENCRYPTION
WITH
SHORT
PUBLIC
EXPONENTS
.
215
7.5.2
FAST
DECRYPTION
WITH
THE
CHINESE
REMAINDER
THEOREM
.
216
7.6
FINDING
LARGE
PRIMES
.
219
7.6.1
HOW
COMMON
ARE
PRIMES?
.
220
7.6.2
PRIMALITY
TESTS
.
221
7.7
RSA
IN
PRACTICE:
PADDING
.
224
7.8
KEY
ENCAPSULATION
.
226
7.9
ATTACKS
.
228
7.10
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
230
7.11
DISCUSSION
AND
FURTHER
READING
.
232
7.12
LESSONS
LEARNED
.
234
PROBLEMS
.
235
8
CRYPTOSYSTEMS
BASED
ON
THE
DISCRETE
LOGARITHM
PROBLEM
.
241
8.1
DIFFIE-HELLMAN
KEY
EXCHANGE
.
242
8.2
SOME
ABSTRACT
ALGEBRA
.
244
8.2.1
GROUPS
.
244
8.2.2
CYCLICGROUPS
.
246
8.2.3
SUBGROUPS
.
250
8.3
THE DISCRETE
LOGARITHM
PROBLEM
.
252
8.3.1
THE
DISCRETE
LOGARITHM
PROBLEM
IN
PRIME
FIELDS
.
252
8.3.2
THE
GENERALIZED
DISCRETE
LOGARITHM
PROBLEM
.
253
8.3.3
ATTACKS
AGAINST
THE
DISCRETE
LOGARITHM
PROBLEM
.
255
8.4
SECURITY
OF
THE
DIFFIE-HELLMAN
KEY
EXCHANGE
.
260
8.5
THE
ELGAMAL
ENCRYPTION
SCHEME
.
261
8.5.1
FROM
DIFFIE-HELLMAN
KEY
EXCHANGE
TO
ELGAMAL
ENCRYPTION
261
8.5.2
THE
ELGAMAL
PROTOCOL
.
262
8.5.3
COMPUTATIONAL
ASPECTS
.
264
8.5.4
SECURITY
.
265
8.6
DISCUSSION
AND
FURTHER
READING
.
267
8.7
LESSONS
LEARNED
.
269
PROBLEMS
.
270
9
ELLIPTIC
CURVE
CRYPTOSYSTEMS
.
277
9.1
HOW
TO
COMPUTE
WITH
ELLIPTIC
CURVES
.
278
9.1.1
DEFINITION
OF
ELLIPTIC
CURVES
.
279
9.1.2
GROUP
OPERATIONS
ON
ELLIPTIC
CURVES
.
281
9.2
BUILDING
A
DISCRETE
LOGARITHM
PROBLEM
WITH
ELLIPTIC
CURVES
.
285
9.3
DIFFIE-HELLMAN
KEY
EXCHANGE
WITH
ELLIPTIC
CURVES
.
289
9.4
SECURITY
.
291
9.5
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
292
9.6
DISCUSSION
AND
FURTHER
READING
.
293
9.7
LESSONS
LEARNED
.
295
PROBLEMS
.
296
10
DIGITAL
SIGNATURES
.
299
10.1
INTRODUCTION
.
300
10.1.1
ODD
COLORS
FOR
CARS,
OR:
WHY
SYMMETRIC
CRYPTOGRAPHY
IS
NOT
SUFFICIENT
.
300
10.1.2
PRINCIPLES
OF
DIGITAL
SIGNATURES
.
301
10.1.3
SECURITY
SERVICES
.
303
10.1.4
APPLICATIONS
OF
DIGITAL
SIGNATURES
.
305
10.2
THE
RSA
SIGNATURE
SCHEME
.
306
10.2.1
SCHOOLBOOK
RSA
DIGITAL
SIGNATURE
.
306
10.2.2
COMPUTATIONAL
ASPECTS
.
308
10.2.3
SECURITY
.
309
10.3
THE
ELGAMAL
DIGITAL
SIGNATURE
SCHEME
.
312
10.3.1
SCHOOLBOOK
ELGAMAL
DIGITAL
SIGNATURE
.
312
10.3.2
COMPUTATIONAL
ASPECTS
.
315
10.3.3
SECURITY
.
315
10.4
THE
DIGITAL
SIGNATURE
ALGORITHM
(DSA)
.
318
10.4.1
THE
DSA
ALGORITHM
.
318
10.4.2
COMPUTATIONAL
ASPECTS
.
322
10.4.3
SECURITY
.
323
10.5
THE
ELLIPTIC
CURVE
DIGITAL
SIGNATURE
ALGORITHM
(ECDSA)
.
324
10.5.1
THE
ECDSA
ALGORITHM
.
324
10.5.2
COMPUTATIONAL
ASPECTS
.
327
10.5.3
SECURITY
.
328
10.6
DISCUSSION
AND
FURTHER
READING
.
329
10.7
LESSONS
LEARNED
.
330
PROBLEMS
.
331
11
HASH
FUNCTIONS
.
335
11.1
MOTIVATION:
SIGNING
LONG
MESSAGES
.
336
11.2
SECURITY
REQUIREMENTS
OF
HASH
FUNCTIONS
.
339
11.2.1
PREIMAGE RESISTANCE
OR
ONE-WAYNESS
.
339
11.2.2
SECOND
PREIMAGE
RESISTANCE
OR
WEAK
COLLISION
RESISTANCE
.
340
11.2.3
COLLISION
RESISTANCE
AND
THE
BIRTHDAY
ATTACK
.
341
11.3
OVERVIEW
OF
HASH
ALGORITHMS
.
346
11.3.1
HASH
FUNCTIONS
FROM
BLOCK
CIPHERS
.
347
11.3.2
THE
DEDICATED
HASH
FUNCTIONS
SHA-1,
SHA-2
AND
SHA-3
.
349
11.4
THE
SECURE
HASH
ALGORITHM
SHA-2
.
351
11.4.1
SHA-256
PREPROCESSING
.
352
11.4.2
THE
SHA-256
COMPRESSION
FUNCTION
.
353
11.4.3
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
356
11.5
THE
SECURE
HASH
ALGORITHM
SHA-3
.
357
11.5.1
HIGH-LEVEL
VIEW
OF
SHA-3
.
358
11.5.2
SUFFIX,
PADDING
AND
OUTPUT
GENERATION
.
360
11.5.3
THE
FUNCTION
KECCAK-/
(OR
THE
KECCAK-/
PERMUTATION)
.361
11.5.4
OTHER
CRYPTOGRAPHIC
FUNCTIONS
BASED
ON
KECCAK
.
367
11.5.5
IMPLEMENTATION
IN
SOFTWARE
AND
HARDWARE
.
368
11.6
DISCUSSION
AND
FURTHER
READING
.
369
11.7
LESSONS
LEARNED
.
373
PROBLEMS
.
374
12
POST-QUANTUM
CRYPTOGRAPHY
.
379
12.1
INTRODUCTION
.
380
12.1.1
QUANTUM
COMPUTING
AND
CRYPTOGRAPHY
.
380
12.1.2
QUANTUM-SECURE
ASYMMETRIC
CRYPTOSYSTEMS
.
383
12.1.3
THE
USE
OF
UNCERTAINTY
IN
CRYPTOGRAPHY
.
384
12.2
LATTICE-BASED
CRYPTOGRAPHY
.
386
12.2.1
THE
LEARNING
WITH
ERRORS
(LWE)
PROBLEM
.
389
12.2.2
A
SIMPLE
LWE-BASED
ENCRYPTION
SYSTEM
.
391
12.2.3
THE
RING
LEARNING
WITH
ERRORS
PROBLEM
.
399
12.2.4
RING-LWE
ENCRYPTION
SCHEME
.
401
12.2.5
LWE
IN
PRACTICE
.
406
12.2.6
FINAL
REMARKS
.
409
12.3
CODE-BASED
CRYPTOGRAPHY
.
410
12.3.1
LINEAR
CODES
.
411
12.3.2
THE
SYNDROME
DECODING
PROBLEM
.
417
12.3.3
ENCRYPTION
SCHEMES
.
419
12.3.4
SUITABLE
CHOICES
OF
CODES
.
427
12.3.5
FINAL
REMARKS
.
429
12.4
HASH-BASED
CRYPTOGRAPHY
.
430
12.4.1
ONE-TIME
SIGNATURES
.
430
12.4.2
MANY-TIME
SIGNATURES
.
443
12.4.3
FINAL
REMARKS
.
452
12.5
PQC
STANDARDIZATION
.
453
12.6
DISCUSSION
AND
FURTHER
READING
.
454
12.7
LESSONS
LEARNED
.
457
PROBLEMS
.
458
13
MESSAGE
AUTHENTICATION
CODES
(MACS)
.
.
465
13.1
PRINCIPLES
OF
MESSAGE
AUTHENTICATION
CODES
.
466
13.2
MACS
FROM
HASH
FUNCTIONS:
HMAC
.
468
13.3
MACS
FROM
BLOCK
CIPHERS
.
472
13.3.1
CBC-MAC
.
472
13.3.2
CIPHER-BASED
MAC
(CMAC)
.
473
13.3.3
AUTHENTICATED
ENCRYPTION:
THE
COUNTER
WITH
CIPHER
BLOCK
CHAINING-MESSAGE
AUTHENTICATION
CODE
(CCM)
.
474
13.3.4
AUTHENTICATED
ENCRYPTION:
THE
GALOIS
COUNTER MODE
(GCM)476
13.3.5
GALOIS
COUNTER MESSAGE
AUTHENTICATION
CODE
(GMAC)
.
478
13.4
DISCUSSION
AND
FURTHER
READING
.
478
13.5
LESSONS
LEARNED
.
479
PROBLEMS
.
480
14
KEY
MANAGEMENT
.
483
14.1
INTRODUCTION
.
484
14.2
KEY
DERIVATION
.
486
14.3
KEY
ESTABLISHMENT
USING
SYMMETRIC-KEY
TECHNIQUES
.
490
14.3.1
KEY
ESTABLISHMENT
WITH
A
KEY
DISTRIBUTION
CENTER
.
491
14.3.2
NEEDHAM-SCHROEDER
PROTOCOL
.
495
14.3.3
REMAINING
PROBLEMS
WITH
SYMMETRIC-KEY
DISTRIBUTION
.496
14.4
KEY
ESTABLISHMENT
USING
ASYMMETRIC
TECHNIQUES
.
497
14.4.1
MAN-IN-THE-MIDDLE
ATTACK
.
498
14.4.2
CERTIFICATES
.
500
14.5
PUBLIC-KEY
INFRASTRUCTURES
(PKIS)
AND
CAS
.
504
14.5.1
CERTIFICATE
CHAINS
.
505
14.5.2
CERTIFICATE
REVOCATION
.
506
14.6
PRACTICAL
ASPECTS
OF
KEY
MANAGEMENT
.
509
14.7
DISCUSSION
AND
FURTHER
READING
.
511
14.8
LESSONS
LEARNED
.
514
PROBLEMS
.
515
REFERENCES
.
521
INDEX
.
535 |
any_adam_object | 1 |
author | Paar, Christof 1963- Pelzl, Jan 1975- Güneysu, Tim 1979- |
author_GND | (DE-588)1032727705 (DE-588)132800780 (DE-588)138355630 |
author_facet | Paar, Christof 1963- Pelzl, Jan 1975- Güneysu, Tim 1979- |
author_role | aut aut aut |
author_sort | Paar, Christof 1963- |
author_variant | c p cp j p jp t g tg |
building | Verbundindex |
bvnumber | BV049966180 |
classification_rvk | ST 276 |
ctrlnum | (DE-599)DNB1321541848 |
discipline | Informatik |
edition | 2nd edition 2024 |
format | Book |
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id | DE-604.BV049966180 |
illustrated | Illustrated |
indexdate | 2025-01-16T17:11:09Z |
institution | BVB |
institution_GND | (DE-588)1065168780 |
isbn | 9783662690062 3662690063 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-035304071 |
open_access_boolean | |
owner | DE-739 |
owner_facet | DE-739 |
physical | xxi, 543 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm |
publishDate | 2024 |
publishDateSearch | 2024 |
publishDateSort | 2024 |
publisher | Springer Berlin |
record_format | marc |
spelling | Paar, Christof 1963- Verfasser (DE-588)1032727705 aut Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms Christof Paar, Jan Pelzl, Tim Güneysu 2nd edition 2024 202406 Berlin Springer Berlin 2024 xxi, 543 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm txt rdacontent n rdamedia nc rdacarrier Datensicherung (DE-588)4011144-1 gnd rswk-swf Internet (DE-588)4308416-3 gnd rswk-swf Kryptosystem (DE-588)4209132-9 gnd rswk-swf Kryptologie (DE-588)4033329-2 gnd rswk-swf Cryptography Applied cryptography Data security AES PKC PKI DES PQC Internet (DE-588)4308416-3 s Kryptologie (DE-588)4033329-2 s Datensicherung (DE-588)4011144-1 s 2\p DE-604 Kryptosystem (DE-588)4209132-9 s DE-604 Pelzl, Jan 1975- Verfasser (DE-588)132800780 aut Güneysu, Tim 1979- Verfasser (DE-588)138355630 aut Springer-Verlag GmbH (DE-588)1065168780 pbl Erscheint auch als Online-Ausgabe 9783662690079 Vorangegangen ist 9783642041006 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=483b68af1f434d7ca13253fbb7aaceee&prov=M&dok_var=1&dok_ext=htm Inhaltstext X:MVB https://link.springer.com/978-3-662-69006-2 Auszug DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035304071&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20240223 DE-101 https://d-nb.info/provenance/plan#vlb 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Paar, Christof 1963- Pelzl, Jan 1975- Güneysu, Tim 1979- Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms Datensicherung (DE-588)4011144-1 gnd Internet (DE-588)4308416-3 gnd Kryptosystem (DE-588)4209132-9 gnd Kryptologie (DE-588)4033329-2 gnd |
subject_GND | (DE-588)4011144-1 (DE-588)4308416-3 (DE-588)4209132-9 (DE-588)4033329-2 |
title | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms |
title_auth | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms |
title_exact_search | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms |
title_full | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms Christof Paar, Jan Pelzl, Tim Güneysu |
title_fullStr | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms Christof Paar, Jan Pelzl, Tim Güneysu |
title_full_unstemmed | Understanding cryptography from established symmetric and asymmetric ciphers to post-quantum algorithms Christof Paar, Jan Pelzl, Tim Güneysu |
title_short | Understanding cryptography |
title_sort | understanding cryptography from established symmetric and asymmetric ciphers to post quantum algorithms |
title_sub | from established symmetric and asymmetric ciphers to post-quantum algorithms |
topic | Datensicherung (DE-588)4011144-1 gnd Internet (DE-588)4308416-3 gnd Kryptosystem (DE-588)4209132-9 gnd Kryptologie (DE-588)4033329-2 gnd |
topic_facet | Datensicherung Internet Kryptosystem Kryptologie |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=483b68af1f434d7ca13253fbb7aaceee&prov=M&dok_var=1&dok_ext=htm https://link.springer.com/978-3-662-69006-2 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035304071&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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