Compare commits
| Author | SHA1 | Date | |
|---|---|---|---|
|
|
50bd93b56b | ||
|
|
ffbf5b128c | ||
|
|
949f52a21b | ||
|
|
818e1fefaa | ||
|
|
ec6269323f | ||
|
|
34cec4f979 | ||
|
|
23025836f6 | ||
|
|
4eb2ffd882 | ||
|
|
7f66ad3c05 | ||
|
|
781df178f7 |
@@ -4,39 +4,39 @@
|
|||||||
"type": "split",
|
"type": "split",
|
||||||
"children": [
|
"children": [
|
||||||
{
|
{
|
||||||
"id": "fd9f21d5268b584f",
|
"id": "df9e53798dda0491",
|
||||||
"type": "tabs",
|
"type": "tabs",
|
||||||
"children": [
|
"children": [
|
||||||
{
|
{
|
||||||
"id": "25f5b25d5eca7203",
|
"id": "7044dbc4e64a95f3",
|
||||||
"type": "leaf",
|
"type": "leaf",
|
||||||
"state": {
|
"state": {
|
||||||
"type": "markdown",
|
"type": "markdown",
|
||||||
"state": {
|
"state": {
|
||||||
"file": "SS2026/Quantum Computing/17. Quantum Error Correction/Quantum Error Correction.md",
|
"file": "SS2026/Mathematische Logik/Rekursion und Induktion/Rekursion und Induktion.md",
|
||||||
"mode": "source",
|
"mode": "source",
|
||||||
"source": false
|
"source": false
|
||||||
},
|
},
|
||||||
"icon": "lucide-file",
|
"icon": "lucide-file",
|
||||||
"title": "Quantum Error Correction"
|
"title": "Rekursion und Induktion"
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
]
|
]
|
||||||
},
|
},
|
||||||
{
|
{
|
||||||
"id": "321a27ba88bc7ef2",
|
"id": "6c36487cc84f3a87",
|
||||||
"type": "tabs",
|
"type": "tabs",
|
||||||
"children": [
|
"children": [
|
||||||
{
|
{
|
||||||
"id": "644429833dab1cca",
|
"id": "10bf4e3306b527a4",
|
||||||
"type": "leaf",
|
"type": "leaf",
|
||||||
"state": {
|
"state": {
|
||||||
"type": "pdf",
|
"type": "pdf",
|
||||||
"state": {
|
"state": {
|
||||||
"file": "SS2026/Quantum Computing/Anhänge/Introduction-to-Quantum-Computing.pdf"
|
"file": "SS2026/Mathematische Logik/Rekursion und Induktion/Anhänge/log-kap01-handout.pdf"
|
||||||
},
|
},
|
||||||
"icon": "lucide-file-text",
|
"icon": "lucide-file-text",
|
||||||
"title": "Introduction-to-Quantum-Computing"
|
"title": "log-kap01-handout"
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
]
|
]
|
||||||
@@ -216,36 +216,42 @@
|
|||||||
"obsidian-git:Open Git source control": false
|
"obsidian-git:Open Git source control": false
|
||||||
}
|
}
|
||||||
},
|
},
|
||||||
"active": "25f5b25d5eca7203",
|
"active": "7044dbc4e64a95f3",
|
||||||
"lastOpenFiles": [
|
"lastOpenFiles": [
|
||||||
|
"SS2026/Mathematische Logik/Rekursion und Induktion/Anhänge/log-kap01-handout.pdf",
|
||||||
|
"SS2026/Mathematische Logik/Rekursion und Induktion/Rekursion und Induktion.md",
|
||||||
|
"SS2026/Mathematische Logik/Rekursion und Induktion/Anhänge",
|
||||||
|
"SS2026/Mathematische Logik/Mathematische Logik.md",
|
||||||
|
"SS2026/Mathematische Logik/Rekursion und Induktion",
|
||||||
|
"SS2026/Mathematische Logik/Einleitung/Einleitung.md",
|
||||||
"SS2026/Quantum Computing/Introduction to Quantum Computing.md",
|
"SS2026/Quantum Computing/Introduction to Quantum Computing.md",
|
||||||
|
"SS2026/Mathematische Logik/Einleitung/Anhänge/log-intro-handout.pdf",
|
||||||
|
"SS2026/Mathematische Logik/Notation/Notation.md",
|
||||||
|
"SS2026/Mathematische Logik/Notation/Anhänge/log-appA.pdf",
|
||||||
|
"SS2026/Mathematische Logik/Notation/Anhänge",
|
||||||
|
"SS2026/Mathematische Logik/Notation",
|
||||||
|
"SS2026/Mathematische Logik/Einleitung/Anhänge",
|
||||||
|
"SS2026/Mathematische Logik/Einleitung",
|
||||||
|
"SS2026/Klausurplan.canvas",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Quantum Complexity.md",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806203055.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806203005.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202829.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202822.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202815.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202805.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202735.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202558.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge/Pasted image 20260806202511.png",
|
||||||
|
"SS2026/Quantum Computing/19. Quantum Complexity/Anhänge",
|
||||||
|
"SS2026/Quantum Computing/18. Fault-torerant computation/Fault-Tolerant Computation.md",
|
||||||
|
"SS2026/Quantum Computing/18. Fault-torerant computation/Anhänge/Pasted image 20260806140650.png",
|
||||||
"SS2026/Quantum Computing/17. Quantum Error Correction/Quantum Error Correction.md",
|
"SS2026/Quantum Computing/17. Quantum Error Correction/Quantum Error Correction.md",
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Universal Set of Gates.md",
|
"SS2026/Quantum Computing/16. Universal set of gates/Universal Set of Gates.md",
|
||||||
"SS2026/Quantum Computing/17. Quantum Error Correction",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100904.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100859.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100838.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100826.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100821.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806100803.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806095904.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge/Pasted image 20260806095829.png",
|
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates/Anhänge",
|
|
||||||
"SS2026/Quantum Computing/15. Ion-based/Ion-based Quantum Computers.md",
|
"SS2026/Quantum Computing/15. Ion-based/Ion-based Quantum Computers.md",
|
||||||
"SS2026/Quantum Computing/16. Universal set of gates",
|
|
||||||
"SS2026/Quantum Computing/15. Ion-based/Anhänge/Pasted image 20260805194639.png",
|
|
||||||
"SS2026/Quantum Computing/15. Ion-based/Anhänge/Pasted image 20260805194630.png",
|
|
||||||
"SS2026/Quantum Computing/15. Ion-based/Anhänge",
|
|
||||||
"SS2026/Quantum Computing/14. Quantum Computer/From Quantum Physics to Quantum Computers.md",
|
"SS2026/Quantum Computing/14. Quantum Computer/From Quantum Physics to Quantum Computers.md",
|
||||||
"SS2026/Quantum Computing/15. Ion-based",
|
|
||||||
"SS2026/Quantum Computing/14. Quantum Computer/Anhänge",
|
|
||||||
"SS2026/Quantum Computing/13. Quantum Physics/Quantum Physics.md",
|
"SS2026/Quantum Computing/13. Quantum Physics/Quantum Physics.md",
|
||||||
"SS2026/Quantum Computing/Anhänge/Introduction-to-Quantum-Computing.pdf",
|
|
||||||
"SS2026/Quantum Computing/14. Quantum Computer",
|
|
||||||
"SS2026/Quantum Computing/13. Quantum Physics/Anhänge",
|
|
||||||
"SS2026/Quantum Computing/12. Grover's Algorithm/Grover's Algorithm.md",
|
"SS2026/Quantum Computing/12. Grover's Algorithm/Grover's Algorithm.md",
|
||||||
"SS2026/Quantum Computing/13. Quantum Physics",
|
|
||||||
"SS2026/Klausurplan.canvas",
|
|
||||||
"SS2026/Quantum Computing/11. Shor's Algorithm/Shor's Algorithm.md",
|
"SS2026/Quantum Computing/11. Shor's Algorithm/Shor's Algorithm.md",
|
||||||
"SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md",
|
"SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md",
|
||||||
"SS2026/Quantum Computing/9. Bernstein-Vazirani/Bernstein-Vazirani Algorithm.md",
|
"SS2026/Quantum Computing/9. Bernstein-Vazirani/Bernstein-Vazirani Algorithm.md",
|
||||||
@@ -257,13 +263,6 @@
|
|||||||
"SS2026/Quantum Computing/1. Introduction/Introduction to Quantum physics.md",
|
"SS2026/Quantum Computing/1. Introduction/Introduction to Quantum physics.md",
|
||||||
"SS2026/Quantum Computing/2. Probabilistic systems/Probabilistic Systems.md",
|
"SS2026/Quantum Computing/2. Probabilistic systems/Probabilistic Systems.md",
|
||||||
"SS2026/Quantum Computing/3. Quantum Systems/Quantum Systems.md",
|
"SS2026/Quantum Computing/3. Quantum Systems/Quantum Systems.md",
|
||||||
"SS2026/Datenbanken und Informationssysteme/4. SQL/SQL.md",
|
"SS2026/Datenbanken und Informationssysteme/4. SQL/SQL.md"
|
||||||
"SS2026/Datenbanken und Informationssysteme/Datenbanken und Informationssysteme.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/5. Relationale Anfragebearbeitung/Relationale Anfragebearbeitung.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/9. RDF und Semantic Web/Resource Description Framework und Wissensgraphen.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/6. Relationale Entwurfstheorie/Relationale Entwurfstheorie.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/7. Transaktionsverwaltung/Transaktionsverwaltung.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/MongoDB/MongoDB.md",
|
|
||||||
"SS2026/Datenbanken und Informationssysteme/8. Alternative Datenmodelle und No-SQL/Alternative Datenmodelle und No-SQL.md"
|
|
||||||
]
|
]
|
||||||
}
|
}
|
||||||
@@ -2,7 +2,7 @@
|
|||||||
"nodes":[
|
"nodes":[
|
||||||
{"id":"71880b99a91c67bd","type":"text","text":"13.08 [[Datenbanken und Informationssysteme]]","x":-540,"y":-280,"width":250,"height":60,"color":"1"},
|
{"id":"71880b99a91c67bd","type":"text","text":"13.08 [[Datenbanken und Informationssysteme]]","x":-540,"y":-280,"width":250,"height":60,"color":"1"},
|
||||||
{"id":"d9dae797ebe948cd","type":"text","text":"20.08 [[Introduction to Quantum Computing]]","x":-540,"y":-200,"width":250,"height":60,"color":"1"},
|
{"id":"d9dae797ebe948cd","type":"text","text":"20.08 [[Introduction to Quantum Computing]]","x":-540,"y":-200,"width":250,"height":60,"color":"1"},
|
||||||
{"id":"f1808e4ab000c548","type":"text","text":"27.08 MaLo","x":-540,"y":-120,"width":250,"height":60,"color":"1"},
|
{"id":"f1808e4ab000c548","type":"text","text":"27.08 [[Mathematische Logik]]","x":-540,"y":-120,"width":250,"height":60,"color":"1"},
|
||||||
{"id":"3c8b84526662b594","type":"text","text":"16.09 MIT","x":-540,"y":-40,"width":250,"height":60,"color":"1"},
|
{"id":"3c8b84526662b594","type":"text","text":"16.09 MIT","x":-540,"y":-40,"width":250,"height":60,"color":"1"},
|
||||||
{"id":"039d99cbeaa8bacd","type":"text","text":"23.09 EmSys","x":-540,"y":40,"width":250,"height":60,"color":"1"},
|
{"id":"039d99cbeaa8bacd","type":"text","text":"23.09 EmSys","x":-540,"y":40,"width":250,"height":60,"color":"1"},
|
||||||
{"id":"60d4af65fb43a687","type":"text","text":"25.09 Stocha","x":-540,"y":120,"width":250,"height":60,"color":"1"},
|
{"id":"60d4af65fb43a687","type":"text","text":"25.09 Stocha","x":-540,"y":120,"width":250,"height":60,"color":"1"},
|
||||||
@@ -13,7 +13,7 @@
|
|||||||
{"id":"0ee51e9aebc3d818","type":"text","text":"28.08 - 11.09","x":-200,"y":40,"width":140,"height":60,"color":"3"},
|
{"id":"0ee51e9aebc3d818","type":"text","text":"28.08 - 11.09","x":-200,"y":40,"width":140,"height":60,"color":"3"},
|
||||||
{"id":"3b0c086a17329c0a","type":"text","text":"12.09 - 24.09","x":-200,"y":120,"width":140,"height":60,"color":"3"},
|
{"id":"3b0c086a17329c0a","type":"text","text":"12.09 - 24.09","x":-200,"y":120,"width":140,"height":60,"color":"3"},
|
||||||
{"id":"bee8484892d1409c","type":"text","text":"22.07 - 26.07","x":0,"y":-280,"width":140,"height":60,"color":"4"},
|
{"id":"bee8484892d1409c","type":"text","text":"22.07 - 26.07","x":0,"y":-280,"width":140,"height":60,"color":"4"},
|
||||||
{"id":"0a635fdaf64bc22d","type":"text","text":"","x":0,"y":-200,"width":140,"height":60,"color":"4"},
|
{"id":"0a635fdaf64bc22d","type":"text","text":"28.07 - 06.08","x":0,"y":-200,"width":140,"height":60,"color":"4"},
|
||||||
{"id":"d5ded2115fd31993","type":"text","text":"","x":0,"y":-120,"width":140,"height":60,"color":"4"},
|
{"id":"d5ded2115fd31993","type":"text","text":"","x":0,"y":-120,"width":140,"height":60,"color":"4"},
|
||||||
{"id":"0ec16c554bfaa7e9","type":"text","text":"","x":0,"y":-40,"width":140,"height":60,"color":"4"},
|
{"id":"0ec16c554bfaa7e9","type":"text","text":"","x":0,"y":-40,"width":140,"height":60,"color":"4"},
|
||||||
{"id":"ca3de096ea9269e8","type":"text","text":"","x":0,"y":40,"width":140,"height":60,"color":"4"},
|
{"id":"ca3de096ea9269e8","type":"text","text":"","x":0,"y":40,"width":140,"height":60,"color":"4"},
|
||||||
|
|||||||
@@ -0,0 +1,8 @@
|
|||||||
|
Logik ist die Lehre des vernünftigen Schließens.
|
||||||
|
|
||||||
|
Zentrale Fragen:
|
||||||
|
- Wie lassen sich Sachverhalte beschreiben? SYNTAX
|
||||||
|
- Was bedeuten diese formalen Aussagen? SEMANTIK
|
||||||
|
- Wie lassen sich Schlussfolgerungen ziehen und beweisen? INFERENZ
|
||||||
|
|
||||||
|
|
||||||
@@ -0,0 +1,10 @@
|
|||||||
|
## [[Einleitung]]
|
||||||
|
## Rekursion und Induktion
|
||||||
|
## Aussagenlogik
|
||||||
|
## Folgern und Beweisen
|
||||||
|
## Strukturen
|
||||||
|
## Logik der 1. Stufe
|
||||||
|
## Der Vollständigkeitssatz
|
||||||
|
## Unentscheidbarkeit der Logik der 1. Stufe
|
||||||
|
## Elementare Äquivalenz
|
||||||
|
## Ausblick
|
||||||
@@ -0,0 +1 @@
|
|||||||
|
![[log-appA.pdf]]
|
||||||
|
After Width: | Height: | Size: 3.2 KiB |
|
After Width: | Height: | Size: 14 KiB |
|
After Width: | Height: | Size: 30 KiB |
|
After Width: | Height: | Size: 18 KiB |
|
After Width: | Height: | Size: 13 KiB |
|
After Width: | Height: | Size: 34 KiB |
|
After Width: | Height: | Size: 16 KiB |
@@ -0,0 +1,43 @@
|
|||||||
|
One of the biggest challenges in quantum computing is noise.
|
||||||
|
As an Example, when we apply a unitary, this unitary might not behave exactly as expected.
|
||||||
|
|
||||||
|
Classically, error correction uses some kind of error correcting code which, in turn, must also be transmitted over a noisy channel.
|
||||||
|
|
||||||
|
![[Pasted image 20260806110847.png]]
|
||||||
|
|
||||||
|
|
||||||
|
## Repetition codes
|
||||||
|
|
||||||
|
The simplest classical error correcting code is repetition.
|
||||||
|
If we send the bit 0, we repeat it 3 times, same for 1. 0 = 000, 1 = 111.
|
||||||
|
Hamming abstand 3 = 1 bitfehler korrigieren.
|
||||||
|
|
||||||
|
In a quantum system we can't just look at (measure) our system to repeat it.
|
||||||
|
|
||||||
|
### Bit Flip Code
|
||||||
|
|
||||||
|
![[Pasted image 20260806111316.png]]
|
||||||
|
|
||||||
|
Note that we cant just measure if an error has occurred, so we use this circuit:
|
||||||
|
|
||||||
|
![[Pasted image 20260806111448.png]]
|
||||||
|
|
||||||
|
### Phase Flip Code
|
||||||
|
|
||||||
|
Correcting Z-errors is possible with this:
|
||||||
|
|
||||||
|
![[Pasted image 20260806111549.png]]
|
||||||
|
|
||||||
|
|
||||||
|
## Shor's code
|
||||||
|
|
||||||
|
The error correcting code for XZ-errors is called Shor-code.
|
||||||
|
|
||||||
|
![[Pasted image 20260806113147.png]]
|
||||||
|
|
||||||
|
![[Pasted image 20260806113154.png]]
|
||||||
|
|
||||||
|
|
||||||
|
## Steane Code
|
||||||
|
|
||||||
|
![[Pasted image 20260806113212.png]]
|
||||||
|
After Width: | Height: | Size: 45 KiB |
|
After Width: | Height: | Size: 34 KiB |
|
After Width: | Height: | Size: 3.8 KiB |
|
After Width: | Height: | Size: 48 KiB |
|
After Width: | Height: | Size: 70 KiB |
|
After Width: | Height: | Size: 79 KiB |
|
After Width: | Height: | Size: 65 KiB |
@@ -0,0 +1,29 @@
|
|||||||
|
|
||||||
|
We now face two problems with continuous computations:
|
||||||
|
1. Applying operations on logical qubits. Applying operations on encoded qubits would only be possible by decoding - applying - encoding again. Not optimal. Also errors can happen in decode encode.
|
||||||
|
2. Operations on encoded qubits could introduce new more complex errors.
|
||||||
|
|
||||||
|
|
||||||
|
## Operations on logical/physical qubits
|
||||||
|
|
||||||
|
We begin by defining how to apply operations to encoded qubits:
|
||||||
|
|
||||||
|
![[Pasted image 20260806135601.png]]
|
||||||
|
![[Pasted image 20260806135610.png]]
|
||||||
|
|
||||||
|
|
||||||
|
## Fault tolerant Gates
|
||||||
|
|
||||||
|
Now we need to reduce our error probability.
|
||||||
|
|
||||||
|
![[Pasted image 20260806140451.png]]
|
||||||
|
|
||||||
|
To make this circuit fault-tolerant, we replace it with:
|
||||||
|
|
||||||
|
![[Pasted image 20260806140514.png]]
|
||||||
|
|
||||||
|
Let's look at a circuit for CNOT:
|
||||||
|
|
||||||
|
![[Pasted image 20260806140629.png]]
|
||||||
|
![[Pasted image 20260806140639.png]]
|
||||||
|
![[Pasted image 20260806140650.png]]
|
||||||
|
After Width: | Height: | Size: 13 KiB |
|
After Width: | Height: | Size: 12 KiB |
|
After Width: | Height: | Size: 55 KiB |
|
After Width: | Height: | Size: 38 KiB |
|
After Width: | Height: | Size: 41 KiB |
|
After Width: | Height: | Size: 61 KiB |
|
After Width: | Height: | Size: 27 KiB |
|
After Width: | Height: | Size: 14 KiB |
|
After Width: | Height: | Size: 31 KiB |
@@ -0,0 +1,29 @@
|
|||||||
|
We start with the common class NP (Non-deterministic polynomial time)
|
||||||
|
|
||||||
|
![[Pasted image 20260806202511.png]]
|
||||||
|
*Some details omitted
|
||||||
|
|
||||||
|
![[Pasted image 20260806202558.png]]
|
||||||
|
|
||||||
|
Question: can quantum computers solve SAT in polynomial time? (and by that, all problems in NP?)
|
||||||
|
|
||||||
|
|
||||||
|
## Oracle lower bound
|
||||||
|
|
||||||
|
![[Pasted image 20260806202735.png]]
|
||||||
|
|
||||||
|
![[Pasted image 20260806202805.png]]
|
||||||
|
![[Pasted image 20260806202815.png]]
|
||||||
|
![[Pasted image 20260806202822.png]]![[Pasted image 20260806202829.png]]
|
||||||
|
|
||||||
|
## Quantum Merlin Arthur
|
||||||
|
|
||||||
|
Is there a "quantum NP"?
|
||||||
|
|
||||||
|
We define the class QMA (Quantum Merlin Arthur):
|
||||||
|
|
||||||
|
![[Pasted image 20260806203005.png]]
|
||||||
|
|
||||||
|
Example of a QMA Problem: Local Hamiltonian Problem
|
||||||
|
|
||||||
|
![[Pasted image 20260806203055.png]]
|
||||||
@@ -15,3 +15,5 @@
|
|||||||
## 15. [[Ion-based Quantum Computers]]
|
## 15. [[Ion-based Quantum Computers]]
|
||||||
## 16. [[Universal Set of Gates]]
|
## 16. [[Universal Set of Gates]]
|
||||||
## 17. [[Quantum Error Correction]]
|
## 17. [[Quantum Error Correction]]
|
||||||
|
## 18. [[Fault-Tolerant Computation]]
|
||||||
|
## 19. [[Quantum Complexity]]
|
||||||