Hasan Börekci

General Surgeon Dr. ,R-D Drectory of HB ZECHMANN COMP., HB ZECHMANN Medical R&D, Manisa Technopark, Celal Bayar University Area, Manisa,
  • Türkiye

About Hasan Börekci

About Me

I am an independent theoretical physics researcher with a focused interest in the intersection of classical electromagnetism, general relativity, and quantum field theory — particularly in regimes where these frameworks are pushed toward their boundaries.

My primary research project, which I have titled the Börekci Energy Field framework, investigates the spacetime and quantum vacuum behavior inside a stationary enclosed volume surrounded by a high-velocity electromagnetic energy shell. The system under theoretical analysis combines rotating superconducting electromagnets, relativistic electron beams, and positron confinement to create conditions relevant to Lense-Thirring frame dragging, Euler-Heisenberg vacuum nonlinearity, and macroscopic Casimir boundary effects.

The central questions I am pursuing are: Can a relativistic electromagnetic boundary induce a measurable decoupling of quantum field modes inside an enclosed volume from those of the external spacetime? And are existing formulations of general relativity and quantum electrodynamics fully adequate to describe such stationary-interior, moving-boundary configurations — or do they leave room for effects not yet captured by the standard stress-energy tensor formalism?

I approach these questions with an awareness of their speculative character, grounding each step in published literature — including the Tajmar gravitomagnetic experiments, the Gravity Probe B results, ELI/HIBEF vacuum birefringence work, and the ALPHA antihydrogen gravity measurements at CERN — while remaining honest about where current theory gives definitive answers and where genuine open questions remain.

I am here to engage with researchers working in quantum simulation, strong-field QED, gravitomagnetism, and experimental general relativity, and to explore whether the conceptual framework I am developing has testable predictions worth pursuing.

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Recent Comments

Jul 26, 2026

Subject: Expression of Interest – Quantum Simulation of Electromagnetic Spacetime Effects / Börekci Energy Field Framework

Dear Collection Editors,

I am writing to express my interest in contributing to the Quantum Algorithms Collection published in Physics (Springer Nature).

My ongoing research — partially documented as a preprint on Research Square — explores what I term the Börekci Energy Field ( https://doi.org/10.21203/rs.3.rs-9999735/v1 )framework: a theoretical and experimental investigation into the quantum vacuum and spacetime behavior inside a stationary volume enclosed by a high-velocity electromagnetic energy shell. The system combines rotating superconducting electromagnets (5 T), relativistic electron arcs (25 MV, γ ≈ 50), W-Re electrode assemblies, and positron traps to generate conditions relevant to Lense-Thirring frame dragging, Euler-Heisenberg vacuum nonlinearity, and Casimir boundary effects at macroscopic scales.

The connection to quantum algorithms arises at two levels. First, simulating the quantum field behavior inside a curved-spacetime cavity — particularly the modification of vacuum modes by a relativistic electromagnetic boundary — is a computationally intractable problem for classical systems and a natural candidate for quantum simulation algorithms. Second, the framework raises open questions about whether quantum decoherence rates and entanglement structure inside such an enclosed volume differ measurably from free-space predictions, a question that quantum error correction models and quantum channel algorithms may help formalize.

I would welcome guidance on whether a manuscript developing the quantum simulation angle of this framework — including algorithmic approaches to modeling QED vacuum modification under strong-field electromagnetic confinement — would be within scope for this Collection.

Thank you for your time and consideration.

Sincerely,
H. Börekci
[Kurum / bağımsız araştırmacı]
hborekci@hotmail.com.tr

Jul 26, 2026

Subject: Expression of Interest – Quantum Simulation of Electromagnetic Spacetime Effects / Börekci Energy Field Framework

Dear Collection Editors,

I am writing to express my interest in contributing to the Quantum Algorithms Collection published in Physics (Springer Nature).

My ongoing research — partially documented as a preprint on Research Square — explores what I term the Börekci Energy Field framework: a theoretical and experimental investigation into the quantum vacuum and spacetime behavior inside a stationary volume enclosed by a high-velocity electromagnetic energy shell. The system combines rotating superconducting electromagnets (5 T), relativistic electron arcs (25 MV, γ ≈ 50), W-Re electrode assemblies, and positron traps to generate conditions relevant to Lense-Thirring frame dragging, Euler-Heisenberg vacuum nonlinearity, and Casimir boundary effects at macroscopic scales.

The connection to quantum algorithms arises at two levels. First, simulating the quantum field behavior inside a curved-spacetime cavity — particularly the modification of vacuum modes by a relativistic electromagnetic boundary — is a computationally intractable problem for classical systems and a natural candidate for quantum simulation algorithms. Second, the framework raises open questions about whether quantum decoherence rates and entanglement structure inside such an enclosed volume differ measurably from free-space predictions, a question that quantum error correction models and quantum channel algorithms may help formalize.

I would welcome guidance on whether a manuscript developing the quantum simulation angle of this framework — including algorithmic approaches to modeling QED vacuum modification under strong-field electromagnetic confinement — would be within scope for this Collection.

Thank you for your time and consideration.

Sincerely,
H. Börekci
[Kurum / bağımsız araştırmacı]
hborekci@hotmail.com.tr

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