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:::{div} sd-text-center sd-text-primary sd-fs-6 sd-text-wrap sd-text-{black} sd-font-weight-bold Harnesing Magic From The Fabric of Space ::: ::::
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Welcome to our comprehensive guide on Quantum Technology and its implications in the world of computing. This book provides insights into our core values, our mission, and dives deep into the technical aspects of quantum mechanics applied to computing. See also [D. Mo Houshmand interactive lectures on Quantum Hardware and Quantum Machine Learning](http://www.mohoushmand.com/).
- We welcome and appreciate all forms of feedback - if you spot any errors, typos, or see opportunities for improvement, please do not hesitate to share!
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$\mathbb{Q}\mid\mathcal{D}\partial\mathfrak{r}\imath\alpha\rangle$ is a quantum technology company, founded in 2019, with the vision of democratizing access to quantum computing. We aim to make quantum computing accessible and understandable to everyone, everywhere. We believe that quantum computing is the future and holds the key to solving some of the world's most complex problems. Our mission is to research, develop, and educate on quantum technology, driving innovation and understanding in the field. Our core values are the pillars of our organization, guiding every decision and strategy. In the subsequent sections, we'll detail each value and explain its significance.
[](https://www.linkedin.com/in/mohoushmand/)
[](https://github.com/QDaria)
[](https://github.com/MoHoushmand)
[](https://mybinder.org/v2/gh/QDaria/jbmo/HEAD)
[](https://colab.research.google.com/github/googlecolab/colabtools/blob/main/notebooks/colab-github-demo.ipynb)
^^^
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Dedicatated to the memory of Hans Petter Langtangen and Peter Wittek
-- Mo
See Daniel Mo Houshmand for more information.
- caption: Quantum Computers
numbered: true
chapters:
- file: quantum_computers/0_QC/0_quantum_computers
- file: quantum_computers/1_spin/1_0_spin
sections:
- file: quantum_computers/1_spin/1_1_spin_qubits
- file: quantum_computers/1_spin/1_2_spin_qubits_op
- file: quantum_computers/2_nv_center/2_0_nv_center
sections:
- file: quantum_computers/2_nv_center/2_1_nv_center_qubits
- file: quantum_computers/2_nv_center/2_2_nv_center
- file: quantum_computers/3_superconducting/3_0_superconducting
sections:
- file: quantum_computers/3_superconducting/3_1_superconducting_qubits
- file: quantum_computers/3_superconducting/3_2_superconducting_qubits_op
- file: quantum_computers/4_topological_qubits/4_0_topological.ipynb
sections:
- file: quantum_computers/4_topological_qubits/4_1_topological_qubits
- file: quantum_computers/4_topological_qubits/4_2_topological_qubits_op
- file: quantum_computers/5_quantum_annealing/5_0_quantum_annealing.ipynb
sections:
- file: quantum_computers/5_quantum_annealing/5_1_quantum_annealing
- file: quantum_computers/5_quantum_annealing/5_2_quantum_annealing_op
- file: quantum_computers/5_quantum_annealing/5_0_quantum_annealing.ipynb
sections:
- file: quantum_computers/5_quantum_annealing/5_1_quantum_annealing
- file: quantum_computers/5_quantum_annealing/5_2_quantum_annealing_op