Stefanie Barz
Professor of Quantum Information and Technology
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Why Is Stefanie Barz Influential?
(Suggest an Edit or Addition)According to Wikipedia, Stefanie Barz is a German physicist and Professor of Quantum Information and Technology at the University of Stuttgart. She studies quantum physics and quantum information in photonics. Early life and education Barz studied mathematics, physics and computer sciences at the Johannes Gutenberg University Mainz. During her undergraduate studies she was an Erasmus Programme student at the KTH Royal Institute of Technology. She earned her PhD in Vienna before moving to the University of Oxford, where she worked in quantum photonics. She was awarded the University of Vienna LaudiMaxima Prize for her dissertation. Her research created the means to demonstrate blind computing using entangled photons. The photons were generated using a nonlinear crystal, and the entangled photons represent qubits of information. Whilst the sender knows the initial state of entanglement, companies in control of data processing will be unaware, making it impossible to decode the information without destroying it. Her work was covered in the New Scientist, as well as on the BBC and NBC. In 2013 Barz was awarded the Maria Schaumayer Prize and the Loschmidt Prize. During her PhD Barz took part in Falling Walls.
Stefanie Barz's Published Works
Published Works
- Quantum discord as resource for remote state preparation (2012) (395)
- Demonstration of Blind Quantum Computing (2011) (355)
- Experimental verification of quantum computation (2013) (129)
- Heralded generation of entangled photon pairs (2010) (112)
- Distinguishability and Many-Particle Interference. (2016) (91)
- Demonstration of measurement-only blind quantum computing (2016) (70)
- A two-qubit photonic quantum processor and its application to solving systems of linear equations (2014) (56)
- Quantum computing with photons: introduction to the circuit model, the one-way quantum computer, and the fundamental principles of photonic experiments (2015) (41)
- Implementation vulnerabilities in general quantum cryptography (2018) (33)
- Large scale quantum walks by means of optical fiber cavities (2016) (31)
- Quantum Discord as Optimal Resource for Quantum Communication (2012) (15)
- Classical multiparty computation using quantum resources (2017) (14)
- Experimental demonstration of blind quantum computing (2012) (12)
- Practical and efficient experimental characterization of multiqubit stabilizer states (2015) (11)
- Demonstrating elements of measurement-based quantum error correction (2013) (11)
- Anonymous and secret communication in quantum networks (2021) (11)
- Enhanced delegated computing using coherence (2015) (8)
- Correlations for computation and computation for correlations (2020) (7)
- Linear-optical generation of eigenstates of the two-site XY model (2014) (4)
- Anonymous Conference Key Agreement in Quantum Networks (2020) (4)
- Quantum imaging: Beating the classical camera (2010) (3)
- The power of qutrits for non-adaptive measurement-based quantum computing (2022) (2)
- Experimental anonymous conference key agreement using linear cluster states (2022) (1)
- Distinguishability and mixedness in quantum interference (2022) (1)
- Experimental entanglement generation using multiport beam splitters (2023) (1)
- Erratum: A two-qubit photonic quantum processor and its application to solving systems of linear equations (2017) (1)
- Experimental Engineering of Photonic Quantum Entanglement (2012) (0)
- Efficient long-range distribution of multi-photon entanglement (2021) (0)
- Six-photon experiments using an on-chip array of heralded, pure single photon sources (2015) (0)
- Long-range distribution of multiphoton entanglement (2018) (0)
- A Quantum Optical Microphone in the Audio Band (2022) (0)
- Correlations for computation and computation for correlations (2021) (0)
- WF1.5 - Long-range Distribution of Multiphoton Entanglement (2019) (0)
- 2 a b c d State qubit : Eigenvalue qubit : Ancilla qubit : 1 (2013) (0)
- Photonic Networked Quantum Information Technologies (2016) (0)
- Multiparticle distinguishability: three photons are different in four ways (2017) (0)
- 3 HWP QWP t 1 t 2 t 3 state preparation on-chip photon-pair source photon detection heralding polarisationtime delays fibre tritter (2016) (0)
- Experimental photonic state engineering and quantum control of two optical qubits (2011) (0)
- [OSA Vice President Special Lecture] Photonic Quantum Networks (2016) (0)
- By utilizing the spatial quantum correlations of light, Italian researchers have now performed imaging at signifi cantly higher signal-to-noise ratios than those possible through classical techniques. (2010) (0)
- Bell-state measurement exceeding 50% success probability with linear optics (2022) (0)
- Generating Greenberger-Horne-Zeilinger states using multiport splitters (2023) (0)
- Quantum Information in Gravitational Fields (2014) (0)
- Photonic Quantum Computing (2013) (0)
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What Schools Are Affiliated With Stefanie Barz?
Stefanie Barz is affiliated with the following schools: