MaxwellX FieldLab · active experiments

Strange
Physics
Inspected.

MaxwellX studies how geometry, fields, boundaries, interfaces, materials, and light shape the movement of energy. We build models and instruments that make hidden effects visible: force, voltage, current, heat, optical response, field shape, coupling, and motion. The effects are measurable. The systems are being built.

Interactive · modes in the gap
Two plates only let certain waves fit between them. Squeeze them and the long wavelengths get excluded — so the gap holds less vacuum energy than open space. Drag the plates.
PLATE GAP d 120 nm
NEGATIVE ENERGY DENSITY
−2.09 J/m³
Scales as 1/d⁴ — halve the gap, 16× stronger. That steepness is why it only matters at nanometers.
∇·E = ρ/ε₀
Gauss's law
Charge sets the field
∇·B = 0
No monopoles
Field lines never end
∇×E = −∂B/∂t
Faraday's law
Change induces field
∇×B = μ₀J + μ₀ε₀ ∂E/∂t
Ampère–Maxwell
Current makes magnetism
S = E×B/μ₀
Poynting flux
Where field energy flows
u = ε₀E²/2 + B²/2μ₀
Field energy density
Energy stored in the field
P = −π²ℏc/240d⁴
Casimir pressure
Geometry alone makes force
What we're building

From measured signatures to field systems.

One research core: geometry changes how fields, light, materials, and boundaries move energy. FieldLab turns that core into measured signatures — and each signature opens a path to instruments, sensing, energy-transfer systems, and eventually autonomous platforms.

01 Active · FieldLab

Energy Transfer Test

Instrumented experiments compare baseline systems against modified geometries and record the signature.

first signature maps
02 Active · Model + Bench

Field Geometry Bench

Electromagnetic fields, light, lasers, cavities, materials, and boundaries tested as one connected system — how geometry changes field shape, coupling, strength, and reach.

geometry-response atlas
03 Active · Optics

Light and Laser Interaction

Structured materials and shaped surfaces tested under optical input — how light, heat, and charge respond.

optical · thermal · electrical maps
04 Active · FieldLab

Energy Accounting

Input, output, storage, loss, heat, time, and uncertainty recorded together in one ledger.

measurement ledger
05 Pipeline

Protected Invention Pipeline

Promising results move into invention capture, review, filing, and controlled disclosure.

patent-ready data package
06 Frontier Horizon

Field Systems

Validated effects move toward instruments, sensors, transducers, autonomous systems, and frontier platforms.

MaxwellX systems
ONE CORE, MANY PATHS
NEAR-TERM
MID-TERM
NORTH STAR
Field Instruments
Measurement systems, probes, calibration hardware, experimental platforms.
Micro/Nano Systems
Structured surfaces, force-control devices, small-scale transducers.
Modeling + Measurement
Data systems connecting designed geometry to measured signatures.
Energy-Transfer Systems
Bench-tested signatures, coupling studies, controlled energy pathways.
Light + Material Systems
Laser interaction, optical gradients, photothermal response, motion.
Frontier Platforms
Long-horizon systems for harsh environments, orbit, remote sensing, and exploration.
EXPLORATORY · LIVE
PEC
Bioelectric field-response
The same core reaches into biology. We're running experiments on how brief pulsatile electrical current shapes regeneration and longevity in living systems — one more path opened by geometry, fields, and boundaries moving energy.
EARLY BENCH

Build instruments for the invisible.

MaxwellX is hiring across physics, hardware, measurement, modeling, and operations. Bring your strongest work — papers, patents, code, experiments, devices, or proof that you can build.