Citation notice #2686 · 2026-07-11 03:18:59.910725+00:00
Higher-order quantum processes respecting closed labs in a spacetime have quantum controlled causal order
cites Computational Advantage from the Quantum Superposition of Multiple Temporal Orders of Photonic Gates, which carries a correction notice dated 2021-02-09. One-hop deterministic notice: the citation edge exists in the Pith bibliography graph; no model judged whether the citation was load-bearing.
Citing paper Event page Original DOI Notice DOI File a formal challenge All reference changes
01Evidence
Raw extraction · citation context · bibliography index 50
"Experimental Transmission of Quantum Information Using a Superposition of Causal Orders". In:Physical Review Letters124.3 (2020).issn: 1079-7114.doi:10.1103/physrevlett.124. 030502.url:http://dx.doi.org/10.1103/PhysRevLett.124.030502. [49] K. Goswami and J. Romero. "Experiments on quantum causality". In:AVS Quantum Science2.3 (2020).issn: 2639-0213.doi:10.1116/5.0010747.url:http://dx.doi.org/10.1116/5.0010747. [50] M' arcio M. Taddei et al. "Computational Advantage from the Quantum Superposition of Multiple Temporal Orders of Photonic Gates". In:PRX Quantum2.1 (2021).issn: 2691-3399.doi:10.1103/ prxquantum.2.010320.url:http://dx.doi.org/10.1103/PRXQuantum.2.010320. [51] Nikola Paunkovi' c and Marko Vojinovi' c. "Causal orders, quantum circuits and spacetime: distinguishing
02Event
- Type
- Correction
- Source
- Crossref
- Original DOI
- 10.1103/prxquantum.2.010320
- Notice DOI
- 10.1103/prxquantum.2.010320
- Date
- 2021-02-09
- Title
- Computational Advantage from the Quantum Superposition of Multiple Temporal Orders of Photonic Gates
- Reasons
- ['Correction']
- Work
- Computational Advantage from the Quantum Superposition of Multiple Temporal Orders of Photonic Gates (2021)
03Dispute this notice
If this citation does not depend on the flagged claim, or the event is wrong, say so. Disputes are public. For a signed challenge against the paper itself, use the formal challenge form.