Tippie 🦅 (@comanchetippie) 's Twitter Profile
Tippie 🦅

@comanchetippie

🦅 Nʉmʉnʉʉ Comanche | compsciASU senior | IBM_Quantum hobbyist | engineer producer | @BitViewAR

ID: 21348968

linkhttp://www.qubits.work calendar_today19-02-2009 22:50:39

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Delayed-Choice Entanglement Swapping on IBM’s 127-Qubit Quantum Computer ⚛️ This experiment shows how future decisions can influence past quantum states through delayed-choice entanglement swapping. The circuit begins by creating two entangled qubit pairs (q_0, q_1​ and q_2, q_3

Delayed-Choice Entanglement Swapping on IBM’s 127-Qubit Quantum Computer ⚛️

This experiment shows how future decisions can influence past quantum states through delayed-choice entanglement swapping. The circuit begins by creating two entangled qubit pairs (q_0, q_1​ and q_2, q_3
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Multi-Layer Retrocausal Encryption with IBM's 127-Qubit Quantum Computer ⚛️🔐 This experiment explores retrocausal encryption using quantum entanglement and delayed-choice operations. In quantum mechanics, retrocausality implies that future decisions in a quantum circuit can

Multi-Layer Retrocausal Encryption with IBM's 127-Qubit Quantum Computer ⚛️🔐

This experiment explores retrocausal encryption using quantum entanglement and delayed-choice operations. In quantum mechanics, retrocausality implies that future decisions in a quantum circuit can
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Twistor-Inspired Quantum Teleportation with IBM's 127-Qubit Quantum Computer ⚛️⚛️ This experiment implements a novel quantum teleportation protocol on IBM’s 127-qubit 'ibm_sherbrooke' quantum computer using Qiskit. It integrates a geometric, Twistor-inspired error correction

Twistor-Inspired Quantum Teleportation with IBM's 127-Qubit Quantum Computer ⚛️⚛️

This experiment implements a novel quantum teleportation protocol on <a href="/IBM/">IBM</a>’s 127-qubit 'ibm_sherbrooke' quantum computer using <a href="/qiskit/">Qiskit</a>. It integrates a geometric, Twistor-inspired error correction
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Twistor-Entangled Quantum Repetition using IBM’s 127-Qubit Quantum Computer 🌌 This experiment implements a quantum repetition code enhanced by a Twistor-inspired geometric entanglement layer, executed on IBM's 127-qubit 'ibm_brisbane' with Qiskit. The goal is to test whether

Twistor-Entangled Quantum Repetition using IBM’s 127-Qubit Quantum Computer 🌌

This experiment implements a quantum repetition code enhanced by a Twistor-inspired geometric entanglement layer, executed on <a href="/IBM/">IBM</a>'s 127-qubit 'ibm_brisbane' with <a href="/qiskit/">Qiskit</a>. The goal is to test whether
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Dynamic Casimir Photon Emission on a 133-Qubit Quantum Computer⚛️ This experiment emulates the dynamic Casimir effect, the conversion of vacuum fluctuations by a relativistically moving mirror, using a 60‑qubit line on IBM’s 133‑qubit 'ibm_torino' with Qiskit. Qubit pairs play

Dynamic Casimir Photon Emission on a 133-Qubit Quantum Computer⚛️

This experiment emulates the dynamic Casimir effect, the conversion of vacuum fluctuations by a relativistically moving mirror, using a 60‑qubit line on <a href="/IBM/">IBM</a>’s 133‑qubit 'ibm_torino' with <a href="/qiskit/">Qiskit</a>. Qubit pairs play
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Breaking a 5-Bit Elliptic Curve Key with a 133-Qubit Quantum Computer ⚛️ This experiment breaks a 5-bit elliptic curve cryptographic key using Shor’s algorithm. Executed on IBM's 133-qubit ibm_torino with Qiskit, a 15-qubit circuit, comprised of 10 logical qubits and 5

Breaking a 5-Bit Elliptic Curve Key with a 133-Qubit Quantum Computer ⚛️

This experiment breaks a 5-bit elliptic curve cryptographic key using Shor’s algorithm. Executed on <a href="/IBM/">IBM</a>'s 133-qubit ibm_torino with <a href="/qiskit/">Qiskit</a>, a 15-qubit circuit, comprised of 10 logical qubits and 5
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This is fascinating because, unlike our everyday experience of time, quantum mechanics operates through causal structure rather than any measurable or relative clock. The Bloch clock qubit introduces geometric time through causal rotations on the Bloch sphere, via gates like

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My IBM quantum 5-bit Shor-style ECC key break has been added to INSPIRE, a database for high-energy physics maintained in collaboration with CERN. inspirehep.net/literature/294…

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There's a platform that lets anyone test a quantum computer TODAY (for free). Here are some of the most interesting experiments run by Steve Tippeconnic on real quantum computers. 🧵👇

There's a platform that lets anyone test a quantum computer TODAY (for free).

Here are some of the most interesting experiments run by <a href="/stevetipp/">Steve Tippeconnic</a> on real quantum computers.

🧵👇