diff --git a/.obsidian/workspace.json b/.obsidian/workspace.json index 518d5d4..e741724 100644 --- a/.obsidian/workspace.json +++ b/.obsidian/workspace.json @@ -216,6 +216,9 @@ }, "active": "25f5b25d5eca7203", "lastOpenFiles": [ + "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183145.png", + "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183136.png", + "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730182117.png", "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730181941.png", "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730181449.png", "SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge", @@ -233,10 +236,7 @@ "SS2026/Quantum Computing/8. Ket Notation/Ket Notation.md", "SS2026/Quantum Computing/9. Bernstein-Vazirani", "SS2026/Quantum Computing/8. Ket Notation/Anhänge/Pasted image 20260730103836.png", - "SS2026/Quantum Computing/8. Ket Notation/Anhänge/Pasted image 20260730103526.png", "SS2026/Quantum Computing/7. Quantum Circuits/Quantum Circuits.md", - "SS2026/Quantum Computing/8. Ket Notation/Anhänge/Pasted image 20260730102318.png", - "SS2026/Quantum Computing/8. Ket Notation/Anhänge/Pasted image 20260730102312.png", "SS2026/Quantum Computing/8. Ket Notation/Anhänge", "SS2026/Quantum Computing/8. Ket Notation", "SS2026/Quantum Computing/4. Observing and measuring/Observing probabilistic and measuring quantum systems.md", diff --git a/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730182117.png b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730182117.png new file mode 100644 index 0000000..6d900fa Binary files /dev/null and b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730182117.png differ diff --git a/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183136.png b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183136.png new file mode 100644 index 0000000..d93b1a2 Binary files /dev/null and b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183136.png differ diff --git a/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183145.png b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183145.png new file mode 100644 index 0000000..3198ea7 Binary files /dev/null and b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Anhänge/Pasted image 20260730183145.png differ diff --git a/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md index e151415..e1f0795 100644 --- a/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md +++ b/SS2026/Quantum Computing/10. Discrete Fourier Transformation/Discrete Fourier Transformation.md @@ -11,4 +11,10 @@ the period of that vector. ## Construction We will now model DFT as a quantum circuit. -For this we only look at N = $2^n$, DFT applied on n qubits. \ No newline at end of file +For this we only look at N = $2^n$, DFT applied on n qubits. + +![[Pasted image 20260730182117.png]] + +Let us look at an example DFT for n = 3: +![[Pasted image 20260730183136.png]] +![[Pasted image 20260730183145.png]]