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The Quantum State Preparation problem aims to prepare an $n$-qubit quantum state $|\psi_v\rangle =\sum_{k=0}^{2^n-1}v_k|k\rangle$ from the initial state $|0\rangle^{\otimes n}$, for a given unit vector $v=(v_0,v_1,v_2,\ldots,v_{2^n-1})^T\in \mathbb{C}^{2^n}$ with $\|v\|_2 = 1$.
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State preservation by repetitive error detection in a superconducting quantum circuit
Julian Kelly, Rami Barends, Austin G Fowler, Anthony Megrant, Evan Jeffrey, Theodore C White, Daniel Sank, Josh Y Mutus, Brooks Campbell, Yu Chen, et al · 2015
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https://algassert.com/circuits/2015/06/22/using-quantum-gates-instead-of-ancilla-bits.html
Craig Gidney · 2015
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Optimal ancilla-free clifford+ v approximation of z-rotations
Neil J Ross · 2015
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Quantum machine learning
Jacob Biamonte, Peter Wittek, Nicola Pancotti, Patrick Rebentrost, Nathan Wiebe, and Seth Lloyd · 2017
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Optimal hamiltonian simulation by quantum signal processing
Guang Hao Low and Isaac L Chuang · 2017
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Quantum recommendation systems
Iordanis Kerenidis and Anupam Prakash · 2017
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10-qubit entanglement and parallel logic operations with a superconducting circuit
Chao Song, Kai Xu, Wuxin Liu, Chui-ping Yang, Shi-Biao Zheng, Hui Deng, Qiwei Xie, Keqiang Huang, Qiujiang Guo, Libo Zhang, et al · 2017
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Ryan LaRose and Brian Coyle · 2020
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A divide-and-conquer algorithm for quantum state preparation
Israel F Araujo, Daniel K Park, Francesco Petruccione, and Adenilton J da Silva · 2020
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Optimal space-depth trade-off of cnot circuits in quantum logic synthesis
Jiaqing Jiang, Xiaoming Sun, Shang-Hua Teng, Bujiao Wu, Kewen Wu, and Jialin Zhang · 2020
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Ibm quantum breaks the 100-qubit processor barrier
Jerry Chow, Oliver Dial, and Jay Gambetta · 2021
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Unveiling our new quantum ai campus. https://blog.google/technology/ai/unveiling-our-new-quantum-ai-campus/
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