FIELD MIND / 01Fieldmind LabRU

FIELD MIND / COMPUTATIONAL RESEARCH

Fieldmind Lab

Computational R&D and Numerical Proof-of-Concepts

We turn scientific and engineering hypotheses into reproducible numerical models, structured experiment series, and technical research reports.

01 / SCOPE

What we do

We test what follows from a model, how robust the result is to parameters, and where experimental evidence is still required. Numerical evidence does not substitute for physical validation.

01

Feasibility Assessment

02

Numerical Proof-of-Concept

03

Computational Research Series

04

Technical Research Report

05

Private R&D under NDA

06

Laboratory Validation Planning

02 / PUBLICATIONS

Selected research

Only studies whose metadata could be verified from available public PDFs.

M2Regeneration2026

M2: Phase-Guided Regeneration under Dynamic Damage and Resource Constraints

A numerical study of phase-guided regeneration under damage, transport, and resource constraints.

DOI
10.5281/zenodo.20526266
Series
M2.1–M2.10v2
T1Thermal2026

T1: Phase-Guided Graphene Thermal Interface

A numerical assessment of phase-guided thermal-interface topology in a graphene-related model.

DOI
10.5281/zenodo.21604565
Series
T1.1–T1.10 · 88 figures
E2Energy2026

E2: Phase-Guided Li-FLG Accumulator

A phase-field numerical study of a lithium–few-layer-graphene accumulator concept.

DOI
10.5281/zenodo.20323370
Series
E1–E9 · five seeds · 20 cycles
V11Foundational2026

V11: Template-Guided Replicator Ecology in Reaction–Diffusion Phase Fields

A reaction–diffusion phase-field study of template-guided replicator ecology.

DOI
10.5281/zenodo.18767914
Series
V11-E1–V11-E12

03 / PROCESS

From hypothesis to report

Every engagement begins by checking whether the question can support a credible numerical analysis.

Initial brief
Feasibility review
Scope and NDA
Model development
Numerical experiment series
Analysis and reporting
Laboratory handoff or next phase

04 / NUMERICAL POC

Why model before the laboratory

A numerical PoC can expose incompatible assumptions early, identify sensitive parameters, define controls, and turn a broad idea into measurable criteria for laboratory validation.

05 / RESEARCHER

Nikita Teslia

Independent researcher working with phase-field and reaction–diffusion models, reproducible numerical experiment series, and explicit reporting of assumptions and limitations.
ORCID 0009-0002-0328-4873 ↗

06 / CONTACT

Have a hypothesis to test?

Send a non-confidential outline. NDA and secure transfer can be arranged after the initial technical review.

Discuss a Project