ABOUT PIPHOTONIC

A measurement question.
An open research process.

piPhotonic presents the research of Lucas Wayne Steele, also known as SatoshiUNO. It brings a one-inch gold-ball idea into a clear view of the geometry, calculations and evidence behind the proposed Photonic Reference Unit and simulated scan workflow.

Produced by Wayne Tech Lab LLC

01 / THE CREATOR & THE STARTING POINT

Lucas Wayne Steele
SatoshiUNO

Research attribution

Research concept
Lucas Wayne Steele
Also known as
SatoshiUNO
Producer
Wayne Tech Lab LLC

The project connects light-based observation with a declared measurement of geometry: reconstruct a contour, calculate its path length and diameter, and assess the resulting ratio.

The one-inch gold-ball thesis

Start with an object.
Make each step inspectable.

The original proposal starts with a one-inch gold ball: scan its surface, choose a contour, represent the points as vectors and lay the measured segments end to end. A two-inch control asks what changes with scale and what should remain consistent.

The website makes that sequence visible through generated controls, simulations and explicit equations. A physical gold-ball scan still needs calibration, a declared reconstruction method and independent validation.

Follow the thesis and its assumptions →

02 / THE RESEARCH RECORD

Keep the method and its evidence together.

The public site presents selected research with attribution, readable explanations and results you can inspect.

Declare the mathematics

The ideal circle identity is established geometry. Every measured contour needs its own path, diameter convention, units and estimator.

Show the simulations

The interactive demonstrations use generated geometry and disclosed teaching inputs. Their numerical results remain distinct from physical instrument measurements.

Test the physical proposal

UNO’s Law / SatoshiUNO’s Law remains a proposed framework. Calibrated data, uncertainty, negative controls and independent replication are the next validation steps.

The preserved research includes definitions, derivations, synthetic benchmark records and internal review notes. The current framework has not been established as a universal physical law or externally validated through replicated gold-ball measurements.

03 / EXPLORE THE WORK

Follow the question at your own pace.

Watch the process

Follow the one-inch gold control from original points to vectors, path length and ratio.

Open Watch →

Inspect the results

Compare generated controls, sampling behavior and the exact values behind the charts.

Explore Charts →

Read the thesis

Understand the proposed framework, its definitions and the questions it aims to test.

Read the Thesis →

Challenge the method

See the calibration, repeatability and independent experiments the physical proposal still needs.

View Validation →

QUESTIONS / REPLICATION / COLLABORATION

Bring a method we can examine.

A focused question, a reproducible result or a useful counterexample can help the work move forward.

Start a research conversation